Newly Characterized Genes

CHECK HERE FOR DESCRIPTIONS OF NEWLY CHARACTERIZED MAIZE GENES!

With the overwhelming number of genes that are being discovered by phenotypic and sequence analyses, the MaizeGDB staff is missing some that should be included in MaizeGDB. We need your help! Please let us know about new genes that you're working on or have recently read about.

MaizeGDB prefers not to assign formal gene names to gene models based purely on orthology. Known difficulties include inclusivity (there are over 10,000 functionally characterized Arabidopsis genes)* and some likelihood of errors in inferred functions. Unlike gene models, gene names are generally conserved unless differently named genes are found to be allelic. Of particular note, naming priveleges are customarily held by researchers who first confirm function.

We encourage researchers to use the annotation tool on the MaizeGDB gene model pages to add their insights about putative function, especially when not currently part of the Phytozome or Gramene pipelines.

Below is a list of newly reported or newly characterized genes (new reference, new gene product, and/or new variation) with which you may not yet be familiar. The genes are sorted by the last time the gene has been updated. To suggest genes for inclusion in this list, email us and include the gene name, full name, chromosome or bin, and a recent reference.

If you cannot find the gene you would like to recommend in the database, send us an email so that we can add it to the database!

This page is based on our monthly release. The updates are made around 4:00am CST.


         Recommended Genes


One month | Six months | One year | All time

New or updated genes since one month ago. The cutoff date is April 6th, 2024.

Last UpdateGeneFull Name : DescriptionChromosome
or Bin
Gene
Model
Recent ReferenceOrthologsUpdate information
2 days agoZm00001d014917  :
 
   Carolina Bellino et al. 2024. Molecular Evolution of RAMOSA1 (RA1) in Land Plants Biomolecules. 14:550.     Reference: May 3rd, 2024
Gene Product: November 14th, 2022
2 days agobm1 brown midrib1:
5.04
   Tyler Foster et al. 2024. Fine mapping of major QTL qshgd1 for spontaneous haploid genome doubling in maize (Zea mays L.). Theor Appl Genet. 137:117.     Reference: May 3rd, 2024
Gene Product: September 1st, 2003
Variation: November 17th, 2020
2 days agoga1 gametophyte factor1:
4.02 - 4.03
   Zhang, ZG et al. 2018. Nature communications p.3678     Reference: May 3rd, 2024
Variation: June 22nd, 2005
2 days agoga2 gametophyte factor2:
5.04
   Bapat, AR and Scott, MP 2024. Pectin methylesterase activities in reproductive tissues of maize plants with different haplotypes of the Ga1 and Ga2 cross incompatibility systems. Plant Reproduction. :doi: 10.1007/s00497-024-00502-0.     Reference: May 3rd, 2024
Variation: September 29th, 2016
2 days agora1 ramosa1:
7.02
   Carolina Bellino et al. 2024. Molecular Evolution of RAMOSA1 (RA1) in Land Plants Biomolecules. 14:550.     Reference: May 3rd, 2024
Gene Product: April 11th, 2007
Variation: August 20th, 2010
2 days agoumc1283  :
5.04
GRMZM2G094353
Tyler Foster et al. 2024. Fine mapping of major QTL qshgd1 for spontaneous haploid genome doubling in maize (Zea mays L.). Theor Appl Genet. 137:117.     Reference: May 3rd, 2024
Variation: September 1st, 2003
Gene Model: May 15th, 2020
2 days agotcb1 teosinte crossing barrier1:
4.04
   Bapat, AR and Scott, MP 2024. Pectin methylesterase activities in reproductive tissues of maize plants with different haplotypes of the Ga1 and Ga2 cross incompatibility systems. Plant Reproduction. :doi: 10.1007/s00497-024-00502-0.     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
Variation: May 24th, 2019
2 days agodof21 C2C2-Dof-transcription factor 21:
1.02
GRMZM2G162749
Carolina Bellino et al. 2024. Molecular Evolution of RAMOSA1 (RA1) in Land Plants Biomolecules. 14:550.     Reference: May 3rd, 2024
Variation: January 6th, 2017
Gene Model: January 6th, 2017
2 days agommp225  :
10.04
GRMZM2G137736
Carolina Bellino et al. 2024. Molecular Evolution of RAMOSA1 (RA1) in Land Plants Biomolecules. 14:550.     Reference: May 3rd, 2024
Gene Product: November 14th, 2022
Gene Model: December 10th, 2021
2 days agopme36 pectin methylesterase36:
2.03
GRMZM2G162333
Bapat, AR and Scott, MP 2024. Pectin methylesterase activities in reproductive tissues of maize plants with different haplotypes of the Ga1 and Ga2 cross incompatibility systems. Plant Reproduction. :doi: 10.1007/s00497-024-00502-0.     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
Gene Model: December 28th, 2019
2 days agopme31 pectin methylesterase31:
3.09
GRMZM2G004927
Bapat, AR and Scott, MP 2024. Pectin methylesterase activities in reproductive tissues of maize plants with different haplotypes of the Ga1 and Ga2 cross incompatibility systems. Plant Reproduction. :doi: 10.1007/s00497-024-00502-0.     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
Gene Model: December 28th, 2019
2 days agopme3 pectin methylesterase3:
 
   Bapat, AR and Scott, MP 2024. Pectin methylesterase activities in reproductive tissues of maize plants with different haplotypes of the Ga1 and Ga2 cross incompatibility systems. Plant Reproduction. :doi: 10.1007/s00497-024-00502-0.     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
2 days agoZm00001d048936  :
 
GRMZM2G119698
Zhang, ZG et al. 2018. Nature communications p.3678     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
Gene Model: September 10th, 2018
2 days agopme8 pectin methylesterase8:
 
GRMZM2G128549
Zhang, ZG et al. 2018. Nature communications p.3678     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
Gene Model: December 28th, 2019
2 days agopme24 pectin methylesterase24:
 
GRMZM2G404767
Bapat, AR and Scott, MP 2024. Pectin methylesterase activities in reproductive tissues of maize plants with different haplotypes of the Ga1 and Ga2 cross incompatibility systems. Plant Reproduction. :doi: 10.1007/s00497-024-00502-0.     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
Gene Model: December 28th, 2019
2 days agopme26 pectin methylesterase26:
 
GRMZM2G019411
Bapat, AR and Scott, MP 2024. Pectin methylesterase activities in reproductive tissues of maize plants with different haplotypes of the Ga1 and Ga2 cross incompatibility systems. Plant Reproduction. :doi: 10.1007/s00497-024-00502-0.     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
Gene Model: December 28th, 2019
2 days agopme30 pectin methylesterase30:
 
GRMZM2G121278
Bapat, AR and Scott, MP 2024. Pectin methylesterase activities in reproductive tissues of maize plants with different haplotypes of the Ga1 and Ga2 cross incompatibility systems. Plant Reproduction. :doi: 10.1007/s00497-024-00502-0.     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
Gene Model: December 28th, 2019
2 days agopme32 pectin methylesterase32:
 
GRMZM2G318299
Bapat, AR and Scott, MP 2024. Pectin methylesterase activities in reproductive tissues of maize plants with different haplotypes of the Ga1 and Ga2 cross incompatibility systems. Plant Reproduction. :doi: 10.1007/s00497-024-00502-0.     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
Gene Model: December 28th, 2019
2 days agopme33 pectin methylesterase33:
 
GRMZM2G070913
Bapat, AR and Scott, MP 2024. Pectin methylesterase activities in reproductive tissues of maize plants with different haplotypes of the Ga1 and Ga2 cross incompatibility systems. Plant Reproduction. :doi: 10.1007/s00497-024-00502-0.     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
Gene Model: December 28th, 2019
2 days agopme34 pectin methylesterase34:
 
GRMZM2G422631
Bapat, AR and Scott, MP 2024. Pectin methylesterase activities in reproductive tissues of maize plants with different haplotypes of the Ga1 and Ga2 cross incompatibility systems. Plant Reproduction. :doi: 10.1007/s00497-024-00502-0.     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
Gene Model: December 28th, 2019
2 days agopme35 pectin methylesterase35:
 
GRMZM2G455564
Bapat, AR and Scott, MP 2024. Pectin methylesterase activities in reproductive tissues of maize plants with different haplotypes of the Ga1 and Ga2 cross incompatibility systems. Plant Reproduction. :doi: 10.1007/s00497-024-00502-0.     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
Gene Model: December 28th, 2019
2 days agopme37 pectin methylesterase37:
 
GRMZM2G043943
Bapat, AR and Scott, MP 2024. Pectin methylesterase activities in reproductive tissues of maize plants with different haplotypes of the Ga1 and Ga2 cross incompatibility systems. Plant Reproduction. :doi: 10.1007/s00497-024-00502-0.     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
Gene Model: December 28th, 2019
2 days agopme38 pectin methylesterase38:
 
GRMZM2G071339
Bapat, AR and Scott, MP 2024. Pectin methylesterase activities in reproductive tissues of maize plants with different haplotypes of the Ga1 and Ga2 cross incompatibility systems. Plant Reproduction. :doi: 10.1007/s00497-024-00502-0.     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
Gene Model: December 28th, 2019
2 days agopme39 pectin methylesterase39:
 
GRMZM2G120779
Bapat, AR and Scott, MP 2024. Pectin methylesterase activities in reproductive tissues of maize plants with different haplotypes of the Ga1 and Ga2 cross incompatibility systems. Plant Reproduction. :doi: 10.1007/s00497-024-00502-0.     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
Gene Model: December 28th, 2019
2 days agopme40 pectin methylesterase40:
 
GRMZM2G177940
Bapat, AR and Scott, MP 2024. Pectin methylesterase activities in reproductive tissues of maize plants with different haplotypes of the Ga1 and Ga2 cross incompatibility systems. Plant Reproduction. :doi: 10.1007/s00497-024-00502-0.     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
Gene Model: December 28th, 2019
2 days agopme41 pectin methylesterase41:
 
GRMZM2G037411
Bapat, AR and Scott, MP 2024. Pectin methylesterase activities in reproductive tissues of maize plants with different haplotypes of the Ga1 and Ga2 cross incompatibility systems. Plant Reproduction. :doi: 10.1007/s00497-024-00502-0.     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
Gene Model: December 28th, 2019
2 days agopme42 pectin methylesterase42:
 
GRMZM2G382557
Bapat, AR and Scott, MP 2024. Pectin methylesterase activities in reproductive tissues of maize plants with different haplotypes of the Ga1 and Ga2 cross incompatibility systems. Plant Reproduction. :doi: 10.1007/s00497-024-00502-0.     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
Gene Model: December 28th, 2019
2 days agoZm00001d016245  :
 
GRMZM2G071511
Bapat, AR and Scott, MP 2024. Pectin methylesterase activities in reproductive tissues of maize plants with different haplotypes of the Ga1 and Ga2 cross incompatibility systems. Plant Reproduction. :doi: 10.1007/s00497-024-00502-0.     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
Gene Model: April 14th, 2022
2 days agoTRINITY_DN1207_c0_g1 (PG2)  :
 
GRMZM2G410783
Bapat, AR and Scott, MP 2024. Pectin methylesterase activities in reproductive tissues of maize plants with different haplotypes of the Ga1 and Ga2 cross incompatibility systems. Plant Reproduction. :doi: 10.1007/s00497-024-00502-0.     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
Gene Model: April 14th, 2022
2 days agopme43 pectin methylesterase43:
4.00
GRMZM2G431856
Bapat, AR and Scott, MP 2024. Pectin methylesterase activities in reproductive tissues of maize plants with different haplotypes of the Ga1 and Ga2 cross incompatibility systems. Plant Reproduction. :doi: 10.1007/s00497-024-00502-0.     Reference: May 3rd, 2024
Gene Product: September 10th, 2018
Variation: March 31st, 2005
Gene Model: December 28th, 2019
3 days agoaasr1 abscisic acid stress ripening1:
10.02
GRMZM2G136910
Yang, Y et al. 2024. ZmASR1 negatively regulates drought stress tolerance in maize Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108684.     Reference: May 2nd, 2024
Gene Product: January 2nd, 2019
Variation: December 30th, 2011
Gene Model: November 1st, 2011
3 days agoms26 male sterile26:
1.02 - 1.02
   Albertsen, MC et al. 2006. Nucleotide sequences mediating plant male fertility and method of using same. Patent US7612251B2     Reference: May 2nd, 2024
Gene Product: September 30th, 2013
Variation: July 8th, 2020
3 days agoaasr2 abscisic acid stress ripening2:
2.05
GRMZM5G854138
Liang, YN et al. 2019. Int J Mol Sci 20:2278     Reference: May 2nd, 2024
Gene Product: December 1st, 2011
Variation: November 22nd, 2011
Gene Model: November 1st, 2011
3 days agoaasr6 abscisic acid stress ripening6:
5.04
GRMZM2G057841
Liang, YN et al. 2019. Int J Mol Sci 20:2278     Reference: May 2nd, 2024
Gene Product: January 2nd, 2019
Variation: November 12th, 2014
Gene Model: November 1st, 2011
3 days agoaasr9 abscisic acid stress ripening9:
3.04
GRMZM2G383699
Liang, YN et al. 2019. Int J Mol Sci 20:2278     Reference: May 2nd, 2024
Gene Product: January 2nd, 2019
Gene Model: November 1st, 2011
3 days agoamya1 alpha amylase1:
 
   MacGregor, AW et al. 1988. Cereal Chem 65:326-333     Reference: May 2nd, 2024
Gene Product: September 1st, 2003
Variation: May 12th, 2005
3 days agosod4 superoxide dismutase4:
1.04
   Xinran Gao et al. 2024. ZmmiR398b negatively regulates maize resistance to sugarcane mosaic virus infection by targeting ZmCSD2/4/9. Mol Plant Pathol. 25:e13462.     Reference: May 2nd, 2024
Gene Product: October 4th, 2021
Variation: April 20th, 2005
3 days agossu1 ribulose bisphosphate carboxylase small subunit1:
4.08
   Kathryn Eshenour et al. 2024. Transgenic Expression of Rubisco Accumulation Factor2 and Rubisco Subunits Increases Photosynthesis and Growth in Maize. J Exp Bot. :doi: 10.1093/jxb/erae186.     Reference: May 2nd, 2024
Gene Product: September 1st, 2003
Variation: September 1st, 2003
3 days agossu2 ribulose bisphosphate carboxylase small subunit2:
2.05
GRMZM2G113033
Wostrikoff, K et al. 2012. Ectopic expression of Rubisco subunits in maize mesophyll cells does not overcome barriers to cell type-specific accumulation. Plant Physiol. 160:419-32.     Reference: May 2nd, 2024
Gene Product: September 1st, 2003
Variation: October 14th, 2014
Gene Model: August 7th, 2014
3 days agobss1 bundle sheath strands specific1:
8.06
GRMZM2G168552
Liang, YN et al. 2019. Int J Mol Sci 20:2278     Reference: May 2nd, 2024
Gene Product: December 1st, 2011
Variation: November 1st, 2011
Gene Model: November 1st, 2011
3 days agosod2 superoxide dismutase2:
7.05
   Xinran Gao et al. 2024. ZmmiR398b negatively regulates maize resistance to sugarcane mosaic virus infection by targeting ZmCSD2/4/9. Mol Plant Pathol. 25:e13462.     Reference: May 2nd, 2024
Gene Product: October 4th, 2021
Variation: August 2nd, 2013
3 days agoaasr3 abscisic acid stress ripening3:
2.04
GRMZM5G806182
Liang, YN et al. 2019. Int J Mol Sci 20:2278     Reference: May 2nd, 2024
Gene Product: December 1st, 2011
Gene Model: January 2nd, 2019
3 days agosod9 superoxide dismutase9:
9.04
   Xinran Gao et al. 2024. ZmmiR398b negatively regulates maize resistance to sugarcane mosaic virus infection by targeting ZmCSD2/4/9. Mol Plant Pathol. 25:e13462.     Reference: May 2nd, 2024
Gene Product: October 4th, 2021
Variation: January 21st, 2015
3 days agoamya3 alpha amylase3:
2.07
   MacGregor, AW et al. 1988. Cereal Chem 65:326-333     Reference: May 2nd, 2024
Gene Product: September 1st, 2003
Variation: September 1st, 2003
3 days agorbcL (cp) ribulose-1-5-bisphosphate carboxylase-large subunit:
 
   Kathryn Eshenour et al. 2024. Transgenic Expression of Rubisco Accumulation Factor2 and Rubisco Subunits Increases Photosynthesis and Growth in Maize. J Exp Bot. :doi: 10.1093/jxb/erae186.     Reference: May 2nd, 2024
Gene Product: September 1st, 2003
3 days agoaasr5 abscisic acid stress ripening5:
10.04
GRMZM2G052100
Liang, YN et al. 2019. Int J Mol Sci 20:2278     Reference: May 2nd, 2024
Gene Product: November 4th, 2011
Variation: April 14th, 2007
Gene Model: November 1st, 2011
3 days agoraf1 Rubisco Assembly Factor 1:
 
GRMZM2G457621
Kathryn Eshenour et al. 2024. Transgenic Expression of Rubisco Accumulation Factor2 and Rubisco Subunits Increases Photosynthesis and Growth in Maize. J Exp Bot. :doi: 10.1093/jxb/erae186.     Reference: May 2nd, 2024
Gene Product: October 4th, 2014
Variation: October 4th, 2014
Gene Model: October 4th, 2014
3 days agoaasr7 abscisic acid stress ripening7:
 
GRMZM2G014797
Liang, YN et al. 2019. Int J Mol Sci 20:2278     Reference: May 2nd, 2024
Gene Product: January 2nd, 2019
Gene Model: November 1st, 2011
3 days agoaasr8 abscisic acid stress ripening8:
 
GRMZM2G314075
Liang, YN et al. 2019. Int J Mol Sci 20:2278     Reference: May 2nd, 2024
Gene Product: January 2nd, 2019
Gene Model: November 1st, 2011
3 days agoraf2 rubisco accumulation factor2:
 
GRMZM2G139123
Kathryn Eshenour et al. 2024. Transgenic Expression of Rubisco Accumulation Factor2 and Rubisco Subunits Increases Photosynthesis and Growth in Maize. J Exp Bot. :doi: 10.1093/jxb/erae186.     Reference: May 2nd, 2024
Gene Product: December 16th, 2015
Variation: October 4th, 2014
Gene Model: October 4th, 2014
3 days agoamya2 alpha amylase2:
 
GRMZM2G070172
Albertsen, MC et al. 2006. Nucleotide sequences mediating plant male fertility and method of using same. Patent US7612251B2     Reference: May 2nd, 2024
Gene Product: September 1st, 2003
Gene Model: July 8th, 2020
4 days agobhlh166 bHLH-transcription factor 166:
3.09
   Zhenwei Yan et al. 2024. The ZmbHLH47-ZmSnRK2.9 Module Promotes Drought Tolerance in Maize Int J Mol Sci. 25:4957.     Reference: May 1st, 2024
Variation: September 25th, 2007
4 days agobhlh187 bHLH-transcription factor 187:
4.02
GRMZM2G133675
Zhenwei Yan et al. 2024. The ZmbHLH47-ZmSnRK2.9 Module Promotes Drought Tolerance in Maize Int J Mol Sci. 25:4957.     Reference: May 1st, 2024
Gene Product: September 14th, 2016
Gene Model: April 11th, 2020
4 days agosnrkII9 SnRK2 serine threonine protein kinase9:
 
GRMZM2G081915
Zhenwei Yan et al. 2024. The ZmbHLH47-ZmSnRK2.9 Module Promotes Drought Tolerance in Maize Int J Mol Sci. 25:4957.     Reference: May 1st, 2024
Gene Product: April 14th, 2018
Gene Model: April 14th, 2018
5 days agolarp9 la motif-related protein9:
 
   Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: October 28th, 2021
5 days agolarp10 la motif-related protein10:
 
   Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: October 28th, 2021
5 days agolarp11 la motif-related protein11:
 
   Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: October 28th, 2021
5 days agolarp13 la motif-related protein13:
 
   Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: October 28th, 2021
5 days agolarp14 la motif-related protein14:
 
   Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: October 28th, 2021
5 days agolarp8 la motif-related protein8:
5.00
GRMZM5G861064
Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: October 28th, 2021
Variation: September 25th, 2007
Gene Model: August 25th, 2021
5 days agoact1 actin1:
8.03 - 8.04
   Paloma Serra et al. 2024. A maize enzyme from the 2-oxoglutarate-dependent oxygenase family with unique kinetic properties, mediates resistance against pathogens and regulates senescence. Plant Cell Environ. :doi: 10.1111/pce.14929.     Reference: April 30th, 2024
Gene Product: September 1st, 2003
Variation: September 4th, 2013
5 days agogpc1 glyceraldehyde-3-phosphate dehydrogenase1:
4.05
   Paloma Serra et al. 2024. A maize enzyme from the 2-oxoglutarate-dependent oxygenase family with unique kinetic properties, mediates resistance against pathogens and regulates senescence. Plant Cell Environ. :doi: 10.1111/pce.14929.     Reference: April 30th, 2024
Gene Product: September 1st, 2003
Variation: September 1st, 2003
5 days agompk1 MAP kinase1:
9.06
GRMZM2G053987
Paloma Serra et al. 2024. A maize enzyme from the 2-oxoglutarate-dependent oxygenase family with unique kinetic properties, mediates resistance against pathogens and regulates senescence. Plant Cell Environ. :doi: 10.1111/pce.14929.     Reference: April 30th, 2024
Gene Product: July 12th, 2013
Variation: January 16th, 2013
Gene Model: July 9th, 2013
5 days agotubtf15 TUB-transcription factor 15:
3.08
GRMZM2G062154
Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: September 29th, 2015
Variation: September 1st, 2003
Gene Model: September 29th, 2015
5 days agolarp12 la motif-related protein12:
7.06 - 7.06
GRMZM2G090203
Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Variation: September 1st, 2003
Gene Model: March 16th, 2021
5 days agomir3 maize insect resistance3:
 
GRMZM2G166281
Paloma Serra et al. 2024. A maize enzyme from the 2-oxoglutarate-dependent oxygenase family with unique kinetic properties, mediates resistance against pathogens and regulates senescence. Plant Cell Environ. :doi: 10.1111/pce.14929.     Reference: April 30th, 2024
Gene Product: October 11th, 2021
Variation: August 1st, 2011
Gene Model: February 12th, 2014
5 days agoprp5 pathogenesis related protein5:
1.06
GRMZM2G402631
Paloma Serra et al. 2024. A maize enzyme from the 2-oxoglutarate-dependent oxygenase family with unique kinetic properties, mediates resistance against pathogens and regulates senescence. Plant Cell Environ. :doi: 10.1111/pce.14929.     Reference: April 30th, 2024
Gene Product: December 12th, 2022
Variation: August 20th, 2011
Gene Model: October 30th, 2015
5 days agosbip2a small basic membrane intrinsic protein2a:
1.04
GRMZM2G175038
Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: January 27th, 2022
Variation: September 1st, 2003
Gene Model: February 2nd, 2015
5 days agolarp5 la motif-related protein5:
2.08
GRMZM2G072339
Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: October 28th, 2021
Gene Model: March 23rd, 2020
5 days agoopr8 12-oxo-phytodienoic acid reductase8:
4.05
GRMZM2G082087
Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: September 3rd, 2010
Variation: December 16th, 2019
Gene Model: November 25th, 2013
5 days agoprp4 pathogenesis related protein4:
7.00
GRMZM2G465226
Paloma Serra et al. 2024. A maize enzyme from the 2-oxoglutarate-dependent oxygenase family with unique kinetic properties, mediates resistance against pathogens and regulates senescence. Plant Cell Environ. :doi: 10.1111/pce.14929.     Reference: April 30th, 2024
Gene Product: December 12th, 2022
Variation: August 29th, 2011
Gene Model: November 20th, 2014
5 days agofls1 flavonol synthase1:
 
GRMZM2G152801
Paloma Serra et al. 2024. A maize enzyme from the 2-oxoglutarate-dependent oxygenase family with unique kinetic properties, mediates resistance against pathogens and regulates senescence. Plant Cell Environ. :doi: 10.1111/pce.14929.     Reference: April 30th, 2024
Gene Product: October 10th, 2012
Variation: October 9th, 2012
Gene Model: October 9th, 2012
5 days agofls2 flavonol synthase2:
 
GRMZM2G069298
Paloma Serra et al. 2024. A maize enzyme from the 2-oxoglutarate-dependent oxygenase family with unique kinetic properties, mediates resistance against pathogens and regulates senescence. Plant Cell Environ. :doi: 10.1111/pce.14929.     Reference: April 30th, 2024
Gene Product: October 10th, 2012
Gene Model: October 9th, 2012
5 days agosweet1b sugars will eventually be exported transporter1b:
 
GRMZM2G153358
Paloma Serra et al. 2024. A maize enzyme from the 2-oxoglutarate-dependent oxygenase family with unique kinetic properties, mediates resistance against pathogens and regulates senescence. Plant Cell Environ. :doi: 10.1111/pce.14929.     Reference: April 30th, 2024
Gene Product: November 4th, 2015
Variation: April 19th, 2019
Gene Model: November 3rd, 2015
5 days agopyl10 pyrabactin resistance-like protein10:
 
GRMZM2G063882
Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: January 31st, 2021
Gene Model: April 21st, 2018
5 days agocoi4 coronatine insensitive4:
 
GRMZM2G079112
Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: November 2nd, 2018
Variation: February 15th, 2022
Gene Model: November 2nd, 2018
5 days agoGRMZM2G050234  :
 
GRMZM2G050234
Paloma Serra et al. 2024. A maize enzyme from the 2-oxoglutarate-dependent oxygenase family with unique kinetic properties, mediates resistance against pathogens and regulates senescence. Plant Cell Environ. :doi: 10.1111/pce.14929.   AT4G10500 (TAIR)
LOC_Os04g49210 (MSU/TIGR)
Reference: April 30th, 2024
Gene Product: April 30th, 2024
Gene Model: November 21st, 2019
5 days agopab2 polyA binding protein2:
 
GRMZM2G102829
Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: August 4th, 2020
Gene Model: August 4th, 2020
5 days agocoi6 coronatine insensitive6:
 
   Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: November 2nd, 2018
Variation: February 15th, 2022
5 days agopyl7 pyrabactin resistance-like protein7:
 
GRMZM2G144224
Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: January 31st, 2021
Gene Model: January 31st, 2021
5 days agopyl13 pyrabactin resistance-like protein13:
 
GRMZM2G048733
Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: January 31st, 2021
Gene Model: January 31st, 2021
5 days agolarp1 la motif-related protein1:
 
GRMZM2G020281
Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: October 28th, 2021
Variation: February 25th, 2021
Gene Model: February 25th, 2021
5 days agostp2 sugar transport2:
 
AC208897.3_FG004
Paloma Serra et al. 2024. A maize enzyme from the 2-oxoglutarate-dependent oxygenase family with unique kinetic properties, mediates resistance against pathogens and regulates senescence. Plant Cell Environ. :doi: 10.1111/pce.14929.     Reference: April 30th, 2024
Gene Product: January 2nd, 2023
Gene Model: March 4th, 2021
5 days agoccp14 cysteine protease14:
 
GRMZM2G045706
Paloma Serra et al. 2024. A maize enzyme from the 2-oxoglutarate-dependent oxygenase family with unique kinetic properties, mediates resistance against pathogens and regulates senescence. Plant Cell Environ. :doi: 10.1111/pce.14929.     Reference: April 30th, 2024
Gene Product: October 11th, 2021
Gene Model: October 11th, 2021
5 days agolarp2 la motif-related protein2:
 
GRMZM2G127665
Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: October 28th, 2021
Gene Model: October 28th, 2021
5 days agolarp3 la motif-related protein3:
 
GRMZM2G045503
Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: October 28th, 2021
Gene Model: October 28th, 2021
5 days agolarp6 la motif-related protein6:
 
GRMZM2G411041
Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: October 28th, 2021
Gene Model: October 28th, 2021
5 days agolarp7 la motif-related protein7:
8.01
   Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: October 28th, 2021
5 days agolarp4 la motif-related protein4:
10.03
GRMZM2G171518
Xiaoqin Xiang et al. 2024. Genome-wide investigation of the LARP gene family: focus on functional identification and transcriptome profiling of ZmLARP6c1 in maize pollen. BMC Plant Biology. 24:348.     Reference: April 30th, 2024
Gene Product: October 28th, 2021
Gene Model: November 29th, 2019
6 days agopfk4 phosphofructose kinase4:
 
   Xinglong Wang et al. 2024. Improving resilience to high temperature in drought: water replenishment enhances sucrose and amino acid metabolisms in maize grain. Plant J.     Reference: April 29th, 2024
Gene Product: August 12th, 2016
6 days agohb67 Homeobox-transcription factor 67:
2.01
   Gregory, J. et al. 2024. Mechanisms Of Meristem Maintenance By Maize Transcriptional Corepressors bioRxiv preprint. :doi: 10.1101/2024.04.26.591374.     Reference: April 29th, 2024
Gene Product: August 25th, 2017
6 days agobt2 brittle endosperm2:
4.05
   Xinglong Wang et al. 2024. Improving resilience to high temperature in drought: water replenishment enhances sucrose and amino acid metabolisms in maize grain. Plant J.     Reference: April 29th, 2024
Gene Product: November 4th, 2014
Variation: May 8th, 2023
6 days agoct2 compact plant2:
1.01 - 1.02
GRMZM2G064732
Gregory, J. et al. 2024. Mechanisms Of Meristem Maintenance By Maize Transcriptional Corepressors bioRxiv preprint. :doi: 10.1101/2024.04.26.591374.     Reference: April 29th, 2024
Gene Product: September 16th, 2013
Variation: September 20th, 2013
Gene Model: September 16th, 2013
6 days agokn1 knotted1:
1.10
   Gregory, J. et al. 2024. Mechanisms Of Meristem Maintenance By Maize Transcriptional Corepressors bioRxiv preprint. :doi: 10.1101/2024.04.26.591374.     Reference: April 29th, 2024
Variation: December 6th, 2013
6 days agodhn1 dehydrin1:
6.05
   Xinglong Wang et al. 2024. Improving resilience to high temperature in drought: water replenishment enhances sucrose and amino acid metabolisms in maize grain. Plant J.     Reference: April 29th, 2024
Gene Product: September 1st, 2003
Variation: November 20th, 2012
6 days agosh1 shrunken1:
9.01
   Xinglong Wang et al. 2024. Improving resilience to high temperature in drought: water replenishment enhances sucrose and amino acid metabolisms in maize grain. Plant J.     Reference: April 29th, 2024
Gene Product: October 25th, 2006
Variation: June 9th, 2020
6 days agosh2 shrunken2:
3.09
   Xinglong Wang et al. 2024. Improving resilience to high temperature in drought: water replenishment enhances sucrose and amino acid metabolisms in maize grain. Plant J.     Reference: April 29th, 2024
Gene Product: November 4th, 2014
Variation: January 9th, 2019
6 days agosu2 sugary2:
6.04 - 6.05
   Xinglong Wang et al. 2024. Improving resilience to high temperature in drought: water replenishment enhances sucrose and amino acid metabolisms in maize grain. Plant J.     Reference: April 29th, 2024
Gene Product: October 14th, 2016
Variation: October 7th, 2010
6 days agotd1 thick tassel dwarf1:
5.03
GRMZM2G300133
Gregory, J. et al. 2024. Mechanisms Of Meristem Maintenance By Maize Transcriptional Corepressors bioRxiv preprint. :doi: 10.1101/2024.04.26.591374.     Reference: April 29th, 2024
Gene Product: October 22nd, 2012
Variation: October 23rd, 2012
Gene Model: October 22nd, 2012
6 days agofrk2 fructokinase2:
6.00
GRMZM2G051677
Xinglong Wang et al. 2024. Improving resilience to high temperature in drought: water replenishment enhances sucrose and amino acid metabolisms in maize grain. Plant J.     Reference: April 29th, 2024
Variation: May 1st, 2010
Gene Model: July 29th, 2016
6 days agorel2 ramosa1 enhancer locus2:
10.03
   Gregory, J. et al. 2024. Mechanisms Of Meristem Maintenance By Maize Transcriptional Corepressors bioRxiv preprint. :doi: 10.1101/2024.04.26.591374.     Reference: April 29th, 2024
Gene Product: October 23rd, 2018
Variation: September 5th, 2019
6 days agohb122 Homeobox-transcription factor 122:
 
   Gregory, J. et al. 2024. Mechanisms Of Meristem Maintenance By Maize Transcriptional Corepressors bioRxiv preprint. :doi: 10.1101/2024.04.26.591374.     Reference: April 29th, 2024
Gene Product: August 25th, 2017
6 days agofea4 fasciated ear4:
 
   Gregory, J. et al. 2024. Mechanisms Of Meristem Maintenance By Maize Transcriptional Corepressors bioRxiv preprint. :doi: 10.1101/2024.04.26.591374.     Reference: April 29th, 2024
Gene Product: August 21st, 2018
Variation: July 7th, 2017
6 days agofea2 fasciated ear2:
4.05
   Gregory, J. et al. 2024. Mechanisms Of Meristem Maintenance By Maize Transcriptional Corepressors bioRxiv preprint. :doi: 10.1101/2024.04.26.591374.     Reference: April 29th, 2024
Gene Product: February 1st, 2023
Variation: November 13th, 2020
6 days agosus1 sucrose synthase1:
9.04
GRMZM2G152908
Xinglong Wang et al. 2024. Improving resilience to high temperature in drought: water replenishment enhances sucrose and amino acid metabolisms in maize grain. Plant J.     Reference: April 29th, 2024
Gene Product: October 25th, 2006
Variation: February 1st, 2020
Gene Model: August 12th, 2014
6 days agoagpll1 ADP glucose pyrophosphorylase large subunit leaf1AGPL4:
1.10
GRMZM2G391936
Xinglong Wang et al. 2024. Improving resilience to high temperature in drought: water replenishment enhances sucrose and amino acid metabolisms in maize grain. Plant J.     Reference: April 29th, 2024
Gene Product: January 3rd, 2014
Variation: September 22nd, 2017
Gene Model: September 22nd, 2017
6 days agofnr1 ferredoxin NADP reductase1:
1.11
   Peng, YX et al. 2024. ZmPTOX1, a plastid terminal oxidase, contributes to redox homeostasis during seed development and germination. Plant J. :doi: 10.1111/tpj.16776.     Reference: April 29th, 2024
Gene Product: May 11th, 2021
Variation: December 7th, 2012
6 days agoagp2 ADP glucose pyrophosphorylase2:
6.07 - 6.08
GRMZM2G027955
Xinglong Wang et al. 2024. Improving resilience to high temperature in drought: water replenishment enhances sucrose and amino acid metabolisms in maize grain. Plant J.     Reference: April 29th, 2024
Gene Product: July 22nd, 2015
Variation: June 15th, 2012
Gene Model: June 15th, 2012
6 days agotre1 trehalase1:
 
GRMZM2G162690
Xinglong Wang et al. 2024. Improving resilience to high temperature in drought: water replenishment enhances sucrose and amino acid metabolisms in maize grain. Plant J.     Reference: April 29th, 2024
Gene Product: September 15th, 2013
Gene Model: September 15th, 2013
6 days agotrpp12 trehalose-6-phosphate phosphatase12:
 
GRMZM2G178546
Xinglong Wang et al. 2024. Improving resilience to high temperature in drought: water replenishment enhances sucrose and amino acid metabolisms in maize grain. Plant J.     Reference: April 29th, 2024
Gene Product: October 3rd, 2020
Gene Model: September 15th, 2013
6 days agotrps10 trehalose-6-phosphate synthase10:
 
GRMZM2G312521
Xinglong Wang et al. 2024. Improving resilience to high temperature in drought: water replenishment enhances sucrose and amino acid metabolisms in maize grain. Plant J.     Reference: April 29th, 2024
Gene Product: October 3rd, 2020
Variation: March 18th, 2021
Gene Model: September 15th, 2013
6 days agotrps11 trehalose-6-phosphate synthase11:
 
GRMZM2G122231
Xinglong Wang et al. 2024. Improving resilience to high temperature in drought: water replenishment enhances sucrose and amino acid metabolisms in maize grain. Plant J.     Reference: April 29th, 2024
Gene Product: October 3rd, 2020
Gene Model: September 15th, 2013
6 days agotrps15 trehalose-6-phosphate synthase15:
 
GRMZM2G118462
Xinglong Wang et al. 2024. Improving resilience to high temperature in drought: water replenishment enhances sucrose and amino acid metabolisms in maize grain. Plant J.     Reference: April 29th, 2024
Gene Product: October 3rd, 2020
Gene Model: September 15th, 2013
6 days agofcp1 fon2-like cle protein1:
 
GRMZM2G165836
Gregory, J. et al. 2024. Mechanisms Of Meristem Maintenance By Maize Transcriptional Corepressors bioRxiv preprint. :doi: 10.1101/2024.04.26.591374.   LOC_Os04g39770 (MSU/TIGR)
Os04g0473800 (Gramene)
Reference: April 29th, 2024
Gene Product: May 21st, 2016
Variation: April 15th, 2019
Gene Model: May 21st, 2016
6 days agocle7 clavata3/esr-related7:
 
GRMZM2G372364
Gregory, J. et al. 2024. Mechanisms Of Meristem Maintenance By Maize Transcriptional Corepressors bioRxiv preprint. :doi: 10.1101/2024.04.26.591374.     Reference: April 29th, 2024
Gene Product: February 22nd, 2021
Variation: March 6th, 2020
Gene Model: September 15th, 2016
6 days agotpl1 topless-related1:
 
GRMZM2G316967
Gregory, J. et al. 2024. Mechanisms Of Meristem Maintenance By Maize Transcriptional Corepressors bioRxiv preprint. :doi: 10.1101/2024.04.26.591374.     Reference: April 29th, 2024
Gene Product: October 23rd, 2018
Variation: April 29th, 2024
Gene Model: December 12th, 2016
6 days agotpl2 topless-related2:
 
GRMZM2G030422
Gregory, J. et al. 2024. Mechanisms Of Meristem Maintenance By Maize Transcriptional Corepressors bioRxiv preprint. :doi: 10.1101/2024.04.26.591374.     Reference: April 29th, 2024
Gene Product: October 23rd, 2018
Gene Model: December 12th, 2016
6 days agocrn1 coryne1:
 
GRMZM2G032132
Gregory, J. et al. 2024. Mechanisms Of Meristem Maintenance By Maize Transcriptional Corepressors bioRxiv preprint. :doi: 10.1101/2024.04.26.591374.   AT5G13290 (TAIR) Reference: April 29th, 2024
Gene Product: July 10th, 2019
Gene Model: May 21st, 2018
6 days agotrpp14 trehalose-6-phosphate phosphatase14:
 
   Xinglong Wang et al. 2024. Improving resilience to high temperature in drought: water replenishment enhances sucrose and amino acid metabolisms in maize grain. Plant J.     Reference: April 29th, 2024
Gene Product: October 3rd, 2020
6 days agoptox1 plastid terminal oxidase1:
 
GRMZM2G102349
Peng, YX et al. 2024. ZmPTOX1, a plastid terminal oxidase, contributes to redox homeostasis during seed development and germination. Plant J. :doi: 10.1111/tpj.16776.   AT4G22260 (TAIR)
LOC_Os04g57320 (MSU/TIGR)
Reference: April 29th, 2024
Gene Product: June 15th, 2023
Variation: April 29th, 2024
Gene Model: April 27th, 2020
6 days agorelk3 rel2-like3:
9.06
GRMZM2G550865
Gregory, J. et al. 2024. Mechanisms Of Meristem Maintenance By Maize Transcriptional Corepressors bioRxiv preprint. :doi: 10.1101/2024.04.26.591374.     Reference: April 29th, 2024
Gene Product: October 23rd, 2018
Gene Model: October 23rd, 2018
6 days agoss1 starch synthase I:
9.02
   Xinglong Wang et al. 2024. Improving resilience to high temperature in drought: water replenishment enhances sucrose and amino acid metabolisms in maize grain. Plant J.     Reference: April 29th, 2024
Gene Product: October 14th, 2016
Variation: October 7th, 2010
8 days agogsr1 glutathione reductase1:
1.01
   Ildikó Jócsák et al. 2024. Alterations of Photosynthetic and Oxidative Processes Influenced by the Presence of Different Zinc and Cadmium Concentrations in Maize Seedlings: Transition from Essential to Toxic Functions. Plants. 13     Reference: April 27th, 2024
Gene Product: September 1st, 2003
Variation: January 30th, 2015
8 days agogst1 glutathione-S-transferase1:
8.08 - 8.09
   Ildikó Jócsák et al. 2024. Alterations of Photosynthetic and Oxidative Processes Influenced by the Presence of Different Zinc and Cadmium Concentrations in Maize Seedlings: Transition from Essential to Toxic Functions. Plants. 13     Reference: April 27th, 2024
Gene Product: September 1st, 2003
Variation: September 1st, 2003
8 days agolox2 lipoxygenase2:
3.06
GRMZM2G156861
Ildikó Jócsák et al. 2024. Alterations of Photosynthetic and Oxidative Processes Influenced by the Presence of Different Zinc and Cadmium Concentrations in Maize Seedlings: Transition from Essential to Toxic Functions. Plants. 13     Reference: April 27th, 2024
Gene Product: January 3rd, 2018
Variation: July 18th, 2017
Gene Model: June 10th, 2014
8 days agoprp11 pathogenesis-related protein11:
4.02
GRMZM2G117971
Xiaoyu Gu et al. 2024. Plant immunity suppression by an β-1,3-glucanase of the maize anthracnose pathogen Colletotrichum graminicola. BMC Plant Biology. 24:339.     Reference: April 27th, 2024
Gene Product: May 31st, 2021
Gene Model: September 16th, 2017
8 days agocals1 callose synthase1:
 
GRMZM2G180951
Xiaoyu Gu et al. 2024. Plant immunity suppression by an β-1,3-glucanase of the maize anthracnose pathogen Colletotrichum graminicola. BMC Plant Biology. 24:339.     Reference: April 27th, 2024
Gene Product: July 5th, 2021
Gene Model: July 5th, 2021
9 days agocdj5 chaperone DNA J5:
 
   Yu, S et al. 2024. Dynamic transcriptome profiling revealed a key gene ZmJMJ20 and pathways associated with cadmium stress in maize Ecotoxicol Environ Safety. 277:116352.     Reference: April 26th, 2024
Gene Product: September 1st, 2003
9 days agoLOC100281141  :
 
   Yu, S et al. 2024. Dynamic transcriptome profiling revealed a key gene ZmJMJ20 and pathways associated with cadmium stress in maize Ecotoxicol Environ Safety. 277:116352.     Reference: April 26th, 2024
Gene Product: February 26th, 2021
9 days agoplt16 phospholipid transfer protein16:
 
   Yu, S et al. 2024. Dynamic transcriptome profiling revealed a key gene ZmJMJ20 and pathways associated with cadmium stress in maize Ecotoxicol Environ Safety. 277:116352.     Reference: April 26th, 2024
Gene Product: September 1st, 2003
9 days agojmj23 JUMONJI-transcription factor 23:
 
   Yu, S et al. 2024. Dynamic transcriptome profiling revealed a key gene ZmJMJ20 and pathways associated with cadmium stress in maize Ecotoxicol Environ Safety. 277:116352.   AT3G20810 (TAIR) Reference: April 26th, 2024
Gene Product: April 3rd, 2019
9 days agoacc2 acetyl-CoA carboxylase2:
2.04
GRMZM5G858094
Zhang, SM et al. 2024. Fatty acid de novo biosynthesis in plastids: Key enzymes and their critical roles for male reproduction and other processes in plants. Plant Physiol Biochem. 210:108654.     Reference: April 26th, 2024
Gene Product: September 29th, 2020
Variation: July 7th, 2012
Gene Model: July 7th, 2012
9 days agoms25 male sterile25:
9.04 - 9.06
GRMZM2G120987
Zhang, SM et al. 2024. Fatty acid de novo biosynthesis in plastids: Key enzymes and their critical roles for male reproduction and other processes in plants. Plant Physiol Biochem. 210:108654.     Reference: April 26th, 2024
Gene Product: December 1st, 2017
Variation: April 2nd, 2021
Gene Model: December 1st, 2017
9 days agofat1 fatty acyl thioesterase1:
9.03
GRMZM2G406603
Zhang, SM et al. 2024. Fatty acid de novo biosynthesis in plastids: Key enzymes and their critical roles for male reproduction and other processes in plants. Plant Physiol Biochem. 210:108654.     Reference: April 26th, 2024
Gene Product: January 3rd, 2023
Variation: May 27th, 2014
Gene Model: July 27th, 2016
9 days agosacd3 stearoyl-acyl-carrier-protein desaturase3:
1.05
   An, XL et al. 2023. CRISPR/Cas9-based genome editing of 14 lipid metabolic genes reveals a sporopollenin metabolon ZmPKSB-ZmTKPR1-1/-2 required for pollen exine formation in maize. Plant Biotechnol J. :doi: 10.1111/pbi.14181.     Reference: April 26th, 2024
Gene Product: October 10th, 2016
Variation: November 3rd, 2017
9 days agomyb84 MYB-transcription factor 84:
10.04
   Zhang, SM et al. 2024. Fatty acid de novo biosynthesis in plastids: Key enzymes and their critical roles for male reproduction and other processes in plants. Plant Physiol Biochem. 210:108654.     Reference: April 26th, 2024
Variation: August 19th, 2022
9 days agoacc1 acetyl-coenzyme A carboxylase1:
10.04
AC197672.3_FG002
Zhang, SM et al. 2024. Fatty acid de novo biosynthesis in plastids: Key enzymes and their critical roles for male reproduction and other processes in plants. Plant Physiol Biochem. 210:108654.     Reference: April 26th, 2024
Gene Product: September 1st, 2003
Variation: July 6th, 2012
Gene Model: July 7th, 2012
9 days agofad15 fatty acid desaturase15:
10.03
GRMZM2G169240
Yu, S et al. 2024. Dynamic transcriptome profiling revealed a key gene ZmJMJ20 and pathways associated with cadmium stress in maize Ecotoxicol Environ Safety. 277:116352.     Reference: April 26th, 2024
Gene Product: January 6th, 2022
Gene Model: July 18th, 2021
9 days agoprp3 pathogenesis-related protein3:
4.02
GRMZM2G117989
Yu, S et al. 2024. Dynamic transcriptome profiling revealed a key gene ZmJMJ20 and pathways associated with cadmium stress in maize Ecotoxicol Environ Safety. 277:116352.     Reference: April 26th, 2024
Gene Product: December 12th, 2022
Gene Model: December 24th, 2015
9 days agocol6 C2C2-CO-like-transcription factor 6:
 
   Yu, S et al. 2024. Dynamic transcriptome profiling revealed a key gene ZmJMJ20 and pathways associated with cadmium stress in maize Ecotoxicol Environ Safety. 277:116352.     Reference: April 26th, 2024
Gene Product: June 18th, 2018
9 days agohsftf1 HSF-transcription factor 1:
 
   Mingxiu Ruan et al. 2024. The complex transcriptional regulation of heat stress response in maize. Stress Biol. 4:24.     Reference: April 26th, 2024
Gene Product: May 15th, 2020
9 days agohsftf12 HSF-transcription factor 12:
 
   Mingxiu Ruan et al. 2024. The complex transcriptional regulation of heat stress response in maize. Stress Biol. 4:24.     Reference: April 26th, 2024
Gene Product: May 15th, 2020
9 days agohsftf13 HSF-transcription factor 13:
 
   Mingxiu Ruan et al. 2024. The complex transcriptional regulation of heat stress response in maize. Stress Biol. 4:24.     Reference: April 26th, 2024
Gene Product: May 15th, 2020
9 days agohsftf20 HSF-transcription factor 20:
 
   Mingxiu Ruan et al. 2024. The complex transcriptional regulation of heat stress response in maize. Stress Biol. 4:24.     Reference: April 26th, 2024
Gene Product: May 15th, 2020
Variation: April 4th, 2024
9 days agohsftf24 HSF-transcription factor 24:
 
   Mingxiu Ruan et al. 2024. The complex transcriptional regulation of heat stress response in maize. Stress Biol. 4:24.     Reference: April 26th, 2024
Gene Product: May 15th, 2020
9 days agohsftf27 HSF-transcription factor 27:
 
   Mingxiu Ruan et al. 2024. The complex transcriptional regulation of heat stress response in maize. Stress Biol. 4:24.     Reference: April 26th, 2024
Gene Product: May 15th, 2020
9 days agohsftf4 HSF-transcription factor 4:
 
   Mingxiu Ruan et al. 2024. The complex transcriptional regulation of heat stress response in maize. Stress Biol. 4:24.     Reference: April 26th, 2024
Gene Product: May 15th, 2020
Variation: April 4th, 2024
9 days agohsftf5 HSF-transcription factor 5:
 
   Mingxiu Ruan et al. 2024. The complex transcriptional regulation of heat stress response in maize. Stress Biol. 4:24.     Reference: April 26th, 2024
Gene Product: May 15th, 2020
9 days agohsftf7 HSF-transcription factor 7:
 
   Mingxiu Ruan et al. 2024. The complex transcriptional regulation of heat stress response in maize. Stress Biol. 4:24.     Reference: April 26th, 2024
Gene Product: May 15th, 2020
9 days agohsftf8 HSF-transcription factor 8:
 
   Mingxiu Ruan et al. 2024. The complex transcriptional regulation of heat stress response in maize. Stress Biol. 4:24.     Reference: April 26th, 2024
Gene Product: May 15th, 2020
9 days agoereb22 AP2-EREBP-transcription factor 22:
8.03
GRMZM2G006745
Mingxiu Ruan et al. 2024. The complex transcriptional regulation of heat stress response in maize. Stress Biol. 4:24.     Reference: April 26th, 2024
Variation: July 17th, 2020
Gene Model: September 18th, 2018
9 days agocsu43  :
9.04
GRMZM2G152105
Zhang, SM et al. 2024. Fatty acid de novo biosynthesis in plastids: Key enzymes and their critical roles for male reproduction and other processes in plants. Plant Physiol Biochem. 210:108654.     Reference: April 26th, 2024
Variation: September 1st, 2003
Gene Model: January 14th, 2019
9 days agodfr2 dihydroflavonol-4-reductase2:
1.06
GRMZM2G168893
An, XL et al. 2023. CRISPR/Cas9-based genome editing of 14 lipid metabolic genes reveals a sporopollenin metabolon ZmPKSB-ZmTKPR1-1/-2 required for pollen exine formation in maize. Plant Biotechnol J. :doi: 10.1111/pbi.14181.   AT4G35420 (TAIR) Reference: April 26th, 2024
Gene Product: October 4th, 2023
Gene Model: August 29th, 2017
9 days agohsftf11 HSF-transcription factor 11:
1.11
GRMZM2G132971
Mingxiu Ruan et al. 2024. The complex transcriptional regulation of heat stress response in maize. Stress Biol. 4:24.   AT2G26150 (TAIR) Reference: April 26th, 2024
Gene Product: May 15th, 2020
Variation: March 17th, 2021
Gene Model: October 13th, 2017
9 days agofab1 fatty acid biosynthesis1:
10.04
GRMZM2G099696
Zhang, SM et al. 2024. Fatty acid de novo biosynthesis in plastids: Key enzymes and their critical roles for male reproduction and other processes in plants. Plant Physiol Biochem. 210:108654.     Reference: April 26th, 2024
Gene Product: September 1st, 2003
Variation: December 1st, 2012
Gene Model: July 27th, 2016
9 days agoAI795367  :
10.02
GRMZM2G118286
Zhang, SM et al. 2024. Fatty acid de novo biosynthesis in plastids: Key enzymes and their critical roles for male reproduction and other processes in plants. Plant Physiol Biochem. 210:108654.     Reference: April 26th, 2024
Variation: July 29th, 2004
Gene Model: December 28th, 2017
9 days agoicl1 isocitrate lyase1:
7.03
GRMZM2G056369
Yu, S et al. 2024. Dynamic transcriptome profiling revealed a key gene ZmJMJ20 and pathways associated with cadmium stress in maize Ecotoxicol Environ Safety. 277:116352.     Reference: April 26th, 2024
Gene Product: September 1st, 2003
Variation: July 29th, 2015
Gene Model: July 29th, 2015
9 days agopco121523  :
2.08
GRMZM2G124335
Zhang, SM et al. 2024. Fatty acid de novo biosynthesis in plastids: Key enzymes and their critical roles for male reproduction and other processes in plants. Plant Physiol Biochem. 210:108654.     Reference: April 26th, 2024
Variation: August 15th, 2021
Gene Model: February 22nd, 2018
9 days agoburp6 BURP domain-containing protein-RD22-like6:
 
GRMZM2G113229
An, XL et al. 2023. CRISPR/Cas9-based genome editing of 14 lipid metabolic genes reveals a sporopollenin metabolon ZmPKSB-ZmTKPR1-1/-2 required for pollen exine formation in maize. Plant Biotechnol J. :doi: 10.1111/pbi.14181.     Reference: April 26th, 2024
Gene Product: August 18th, 2017
Variation: August 18th, 2017
Gene Model: August 18th, 2017
9 days agoprp6 pathogenesis-related protein6:
 
GRMZM2G112488
Yu, S et al. 2024. Dynamic transcriptome profiling revealed a key gene ZmJMJ20 and pathways associated with cadmium stress in maize Ecotoxicol Environ Safety. 277:116352.     Reference: April 26th, 2024
Gene Product: December 12th, 2022
Gene Model: September 30th, 2017
9 days agotoc2 timing of cab expression2:
 
GRMZM2G148453
Yu, S et al. 2024. Dynamic transcriptome profiling revealed a key gene ZmJMJ20 and pathways associated with cadmium stress in maize Ecotoxicol Environ Safety. 277:116352.   AT5G61380 (TAIR) Reference: April 26th, 2024
Gene Product: January 11th, 2018
Gene Model: January 11th, 2018
9 days agocl11117_1a  :
5.02
GRMZM2G569855
Yu, S et al. 2024. Dynamic transcriptome profiling revealed a key gene ZmJMJ20 and pathways associated with cadmium stress in maize Ecotoxicol Environ Safety. 277:116352.     Reference: April 26th, 2024
Gene Product: August 31st, 2023
Gene Model: May 7th, 2022
9 days agovq52 VQ motif-transcription factor52:
 
GRMZM2G122447
Yu, S et al. 2024. Dynamic transcriptome profiling revealed a key gene ZmJMJ20 and pathways associated with cadmium stress in maize Ecotoxicol Environ Safety. 277:116352.     Reference: April 26th, 2024
Gene Product: August 31st, 2019
Gene Model: August 31st, 2019
9 days agofax1 fatty acid export1:
 
GRMZM2G046529
Zhang, SM et al. 2024. Fatty acid de novo biosynthesis in plastids: Key enzymes and their critical roles for male reproduction and other processes in plants. Plant Physiol Biochem. 210:108654.   At3g57280 (TAIR) Reference: April 26th, 2024
Gene Product: March 14th, 2020
Gene Model: March 14th, 2020
9 days agoacsn1 acyl-CoA synthetase1:
 
GRMZM2G117064
Zhang, SM et al. 2024. Fatty acid de novo biosynthesis in plastids: Key enzymes and their critical roles for male reproduction and other processes in plants. Plant Physiol Biochem. 210:108654.     Reference: April 26th, 2024
Gene Product: December 20th, 2011
Gene Model: November 27th, 2020
9 days agoosm1 osmotin-like protein1:
 
GRMZM2G136372
Yu, S et al. 2024. Dynamic transcriptome profiling revealed a key gene ZmJMJ20 and pathways associated with cadmium stress in maize Ecotoxicol Environ Safety. 277:116352.   AT4G11650 (TAIR) Reference: April 26th, 2024
Gene Product: September 1st, 2003
Gene Model: November 30th, 2020
9 days agompkl5 MAP kinase-like5:
 
GRMZM2G305321
Yu, S et al. 2024. Dynamic transcriptome profiling revealed a key gene ZmJMJ20 and pathways associated with cadmium stress in maize Ecotoxicol Environ Safety. 277:116352.     Reference: April 26th, 2024
Gene Product: May 13th, 2014
Gene Model: March 12th, 2021
9 days agoIDP2138  :
 
GRMZM2G079308
Zhang, SM et al. 2024. Fatty acid de novo biosynthesis in plastids: Key enzymes and their critical roles for male reproduction and other processes in plants. Plant Physiol Biochem. 210:108654.     Reference: April 26th, 2024
Variation: June 30th, 2021
Gene Model: May 15th, 2021
9 days agoprp14 pathogenesis-related protein14:
 
GRMZM2G304442
Yu, S et al. 2024. Dynamic transcriptome profiling revealed a key gene ZmJMJ20 and pathways associated with cadmium stress in maize Ecotoxicol Environ Safety. 277:116352.     Reference: April 26th, 2024
Gene Product: December 12th, 2022
Gene Model: November 19th, 2021
9 days agosaur15 small auxin up RNA15:
 
GRMZM2G365162
Guantong Gong et al. 2024. Genetic analysis and QTL mapping for pericarp thickness in maize (Zea mays L.). BMC Plant Biology. 24:338.     Reference: April 26th, 2024
Gene Product: November 26th, 2021
Gene Model: November 26th, 2021
9 days agosaur48 small auxin up RNA48:
 
GRMZM2G332390
Yu, S et al. 2024. Dynamic transcriptome profiling revealed a key gene ZmJMJ20 and pathways associated with cadmium stress in maize Ecotoxicol Environ Safety. 277:116352.     Reference: April 26th, 2024
Gene Product: November 26th, 2021
Gene Model: November 26th, 2021
9 days agobzip60 bZIP transcription factor60:
9.03
GRMZM2G025812
Mingxiu Ruan et al. 2024. The complex transcriptional regulation of heat stress response in maize. Stress Biol. 4:24.     Reference: April 26th, 2024
Gene Product: August 21st, 2018
Variation: November 4th, 2022
Gene Model: April 16th, 2013
9 days agodfr1 dihydroflavonoid reductase1:
7.03 - 7.02
GRMZM2G004683
An, XL et al. 2023. CRISPR/Cas9-based genome editing of 14 lipid metabolic genes reveals a sporopollenin metabolon ZmPKSB-ZmTKPR1-1/-2 required for pollen exine formation in maize. Plant Biotechnol J. :doi: 10.1111/pbi.14181.   AT4G35420 (TAIR) Reference: April 26th, 2024
Gene Product: October 4th, 2023
Variation: November 21st, 2012
Gene Model: November 21st, 2012
9 days agoIDP2589  :
2.07
GRMZM2G102878
Zhang, SM et al. 2024. Fatty acid de novo biosynthesis in plastids: Key enzymes and their critical roles for male reproduction and other processes in plants. Plant Physiol Biochem. 210:108654.     Reference: April 26th, 2024
Variation: March 31st, 2005
Gene Model: February 20th, 2019
9 days agocdpk20 calcium dependent protein kinase20:
8.04
GRMZM2G030673
Mingxiu Ruan et al. 2024. The complex transcriptional regulation of heat stress response in maize. Stress Biol. 4:24.     Reference: April 26th, 2024
Gene Product: December 3rd, 2013
Variation: March 31st, 2005
Gene Model: January 10th, 2018
9 days agofat2 fatty acyl-ACP thioesterase2:
9.02
GRMZM5G829544
Zhang, SM et al. 2024. Fatty acid de novo biosynthesis in plastids: Key enzymes and their critical roles for male reproduction and other processes in plants. Plant Physiol Biochem. 210:108654.   AT1G08510 (TAIR) Reference: April 26th, 2024
Gene Product: May 23rd, 2012
Variation: May 6th, 2022
Gene Model: May 23rd, 2012
9 days agokcs32 3-ketoacyl-CoA synthase32:
1.05
GRMZM2G063024
An, XL et al. 2023. CRISPR/Cas9-based genome editing of 14 lipid metabolic genes reveals a sporopollenin metabolon ZmPKSB-ZmTKPR1-1/-2 required for pollen exine formation in maize. Plant Biotechnol J. :doi: 10.1111/pbi.14181.     Reference: April 26th, 2024
Gene Product: November 1st, 2018
Gene Model: February 8th, 2020
10 days agoect21 evolutionarily conserved C-terminal21:
 
   Keli Xu et al. 2024. Genome-Wide Analysis of Maize ECT Family Members and Their Expressions in Response to Abiotic Stresses J Nucl Agric Sci. 38:1035-1047.     Reference: April 25th, 2024
Gene Product: April 25th, 2024
10 days agoc3h59 C3H-transcription factor 59:
 
   Keli Xu et al. 2024. Genome-Wide Analysis of Maize ECT Family Members and Their Expressions in Response to Abiotic Stresses J Nucl Agric Sci. 38:1035-1047.     Reference: April 25th, 2024
Gene Product: November 14th, 2022
10 days agoect1 evolutionarily conserved C-terminal1:
 
   Keli Xu et al. 2024. Genome-Wide Analysis of Maize ECT Family Members and Their Expressions in Response to Abiotic Stresses J Nucl Agric Sci. 38:1035-1047.     Reference: April 25th, 2024
Gene Product: April 25th, 2024
10 days agoect2 evolutionarily conserved C-terminal2:
 
   Keli Xu et al. 2024. Genome-Wide Analysis of Maize ECT Family Members and Their Expressions in Response to Abiotic Stresses J Nucl Agric Sci. 38:1035-1047.     Reference: April 25th, 2024
Gene Product: April 25th, 2024
10 days agoect3 evolutionarily conserved C-terminal3:
 
   Keli Xu et al. 2024. Genome-Wide Analysis of Maize ECT Family Members and Their Expressions in Response to Abiotic Stresses J Nucl Agric Sci. 38:1035-1047.     Reference: April 25th, 2024
Gene Product: April 25th, 2024
10 days agoect5 evolutionarily conserved C-terminal5:
 
   Keli Xu et al. 2024. Genome-Wide Analysis of Maize ECT Family Members and Their Expressions in Response to Abiotic Stresses J Nucl Agric Sci. 38:1035-1047.     Reference: April 25th, 2024
Gene Product: April 25th, 2024
10 days agoect11 evolutionarily conserved C-terminal11:
 
   Keli Xu et al. 2024. Genome-Wide Analysis of Maize ECT Family Members and Their Expressions in Response to Abiotic Stresses J Nucl Agric Sci. 38:1035-1047.     Reference: April 25th, 2024
Gene Product: April 25th, 2024
10 days agoect19 evolutionarily conserved C-terminal19:
 
   Keli Xu et al. 2024. Genome-Wide Analysis of Maize ECT Family Members and Their Expressions in Response to Abiotic Stresses J Nucl Agric Sci. 38:1035-1047.     Reference: April 25th, 2024
Gene Product: April 25th, 2024
10 days agoect20 evolutionarily conserved C-terminal20:
 
   Keli Xu et al. 2024. Genome-Wide Analysis of Maize ECT Family Members and Their Expressions in Response to Abiotic Stresses J Nucl Agric Sci. 38:1035-1047.     Reference: April 25th, 2024
Gene Product: April 25th, 2024
10 days agoect22 evolutionarily conserved C-terminal22:
1.07
GRMZM2G025488
Keli Xu et al. 2024. Genome-Wide Analysis of Maize ECT Family Members and Their Expressions in Response to Abiotic Stresses J Nucl Agric Sci. 38:1035-1047.     Reference: April 25th, 2024
Gene Product: April 25th, 2024
Gene Model: September 6th, 2017
10 days agoect15 evolutionarily conserved C-terminal15:
4.04
GRMZM2G004997
Keli Xu et al. 2024. Genome-Wide Analysis of Maize ECT Family Members and Their Expressions in Response to Abiotic Stresses J Nucl Agric Sci. 38:1035-1047.     Reference: April 25th, 2024
Gene Product: April 25th, 2024
Gene Model: August 22nd, 2021
10 days agoect12 evolutionarily conserved C-terminal12:
1.10
GRMZM2G126338
Keli Xu et al. 2024. Genome-Wide Analysis of Maize ECT Family Members and Their Expressions in Response to Abiotic Stresses J Nucl Agric Sci. 38:1035-1047.     Reference: April 25th, 2024
Gene Product: April 25th, 2024
Variation: August 9th, 2021
Gene Model: August 9th, 2021
10 days agorp1 resistance to Puccinia sorghi1:
10.01
GRMZM2G069382
Jones, JDG et al. 2024. The plant immune system: From discovery to deployment Cell. 187:2095-2116.     Reference: April 25th, 2024
Gene Product: January 17th, 2022
Variation: April 1st, 2015
Gene Model: January 8th, 2018
10 days agoect13 evolutionarily conserved C-terminal13:
2.09
GRMZM2G340130
Keli Xu et al. 2024. Genome-Wide Analysis of Maize ECT Family Members and Their Expressions in Response to Abiotic Stresses J Nucl Agric Sci. 38:1035-1047.     Reference: April 25th, 2024
Gene Product: April 25th, 2024
Variation: November 26th, 2021
Gene Model: November 25th, 2021
10 days agomrp1 Myb related protein1:
8.05
   Gomez, E. 2002. Plant Cell 14:599-610     Reference: April 25th, 2024
Gene Product: September 1st, 2003
Variation: September 1st, 2003
10 days agoect7 evolutionarily conserved C-terminal7:
7.01
GRMZM2G144726
Keli Xu et al. 2024. Genome-Wide Analysis of Maize ECT Family Members and Their Expressions in Response to Abiotic Stresses J Nucl Agric Sci. 38:1035-1047.     Reference: April 25th, 2024
Gene Product: April 25th, 2024
Variation: September 1st, 2003
Gene Model: September 4th, 2018
10 days agoocl3 outer cell layer3:
7.03
   Liang, ZJ et al. 2024. A combination of QTL mapping and genome-wide association study revealed the key gene for husk number in maize. Theor Appl Genet. 137:112.     Reference: April 25th, 2024
Gene Product: September 1st, 2003
Variation: February 23rd, 2013
10 days agoect14 evolutionarily conserved C-terminal14:
1.01
GRMZM2G076062
Keli Xu et al. 2024. Genome-Wide Analysis of Maize ECT Family Members and Their Expressions in Response to Abiotic Stresses J Nucl Agric Sci. 38:1035-1047.     Reference: April 25th, 2024
Gene Product: April 25th, 2024
Variation: February 1st, 2017
Gene Model: April 28th, 2016
10 days agoect18 evolutionarily conserved C-terminal18:
2.02
   Keli Xu et al. 2024. Genome-Wide Analysis of Maize ECT Family Members and Their Expressions in Response to Abiotic Stresses J Nucl Agric Sci. 38:1035-1047.     Reference: April 25th, 2024
Gene Product: April 25th, 2024
10 days agoect8 evolutionarily conserved C-terminal8:
4.05
GRMZM2G056573
Keli Xu et al. 2024. Genome-Wide Analysis of Maize ECT Family Members and Their Expressions in Response to Abiotic Stresses J Nucl Agric Sci. 38:1035-1047.     Reference: April 25th, 2024
Gene Product: April 25th, 2024
Gene Model: April 15th, 2020
10 days agoc3h63 C3H-transcription factor 63:
5.03
GRMZM2G126197
Keli Xu et al. 2024. Genome-Wide Analysis of Maize ECT Family Members and Their Expressions in Response to Abiotic Stresses J Nucl Agric Sci. 38:1035-1047.     Reference: April 25th, 2024
Gene Product: November 14th, 2022
Gene Model: May 13th, 2022
10 days agoect16 evolutionarily conserved C-terminal16:
6.00
GRMZM2G098174
Keli Xu et al. 2024. Genome-Wide Analysis of Maize ECT Family Members and Their Expressions in Response to Abiotic Stresses J Nucl Agric Sci. 38:1035-1047.     Reference: April 25th, 2024
Gene Product: April 25th, 2024
Gene Model: December 4th, 2019
10 days agoect4 evolutionarily conserved C-terminal4:
9.07
GRMZM2G330019
Keli Xu et al. 2024. Genome-Wide Analysis of Maize ECT Family Members and Their Expressions in Response to Abiotic Stresses J Nucl Agric Sci. 38:1035-1047.     Reference: April 25th, 2024
Gene Product: April 25th, 2024
Gene Model: September 10th, 2021
10 days agoetc9 evolutionarily conserved C-terminal9:
 
GRMZM2G303312
Keli Xu et al. 2024. Genome-Wide Analysis of Maize ECT Family Members and Their Expressions in Response to Abiotic Stresses J Nucl Agric Sci. 38:1035-1047.     Reference: April 25th, 2024
Gene Product: April 25th, 2024
Gene Model: March 22nd, 2021
12 days agoxth27 xyloglucan endotransglucosylase/hydrolase27:
 
   Yuanming Wu et al. 2024. Phenotypic Investigation and RNA-seq of KN1 Involved in Leaf Angle Formation in Maize (Zea mays L.) Int J Mol Sci. 25:3180.     Reference: April 23rd, 2024
Gene Product: March 23rd, 2024
12 days agotps28 terpene synthase28:
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: December 6th, 2023
12 days agoprh134 protein phosphatase homolog134:
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: October 25th, 2021
12 days agoGRMZM2G044049  :
 
   Ran Yang et al. 2024. ZmNAC17 Regulates Mesocotyl Elongation by Mediating Auxin and ROS Biosynthetic Pathways in Maize Int J Mol Sci. 25:4585.     Reference: April 23rd, 2024
Gene Product: September 18th, 2015
12 days agoGRMZM2G133434  :
 
   Ran Yang et al. 2024. ZmNAC17 Regulates Mesocotyl Elongation by Mediating Auxin and ROS Biosynthetic Pathways in Maize Int J Mol Sci. 25:4585.     Reference: April 23rd, 2024
Gene Product: September 18th, 2015
12 days agoGRMZM2G171078  :
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: September 18th, 2015
12 days agoGRMZM2G451097  :
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: September 18th, 2015
12 days agoGRMZM2G043855  :
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: September 18th, 2015
12 days agoGRMZM2G117365  :
 
   Ran Yang et al. 2024. ZmNAC17 Regulates Mesocotyl Elongation by Mediating Auxin and ROS Biosynthetic Pathways in Maize Int J Mol Sci. 25:4585.     Reference: April 23rd, 2024
Gene Product: September 18th, 2015
12 days agoGRMZM2G380247  :
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: September 18th, 2015
12 days agopx64 peroxidase64:
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: September 18th, 2015
12 days agotps20 terpene synthase20:
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: December 6th, 2023
12 days agoxth13 xyloglucan endotransglucosylase/hydrolase13:
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: March 23rd, 2024
12 days agobx4 benzoxazinone synthesis4:
4.01
GRMZM2G172491
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: October 24th, 2011
Variation: October 27th, 2011
Gene Model: October 24th, 2011
12 days agobsk3 brassinosteroid-signaling kinase3:
9.04
GRMZM2G054634
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: May 13th, 2014
Gene Model: September 9th, 2021
12 days agotraf21 TNF receptor-associated factor 21:
3.03
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: June 30th, 2021
Variation: May 11th, 2017
12 days agobzip129 bZIP-transcription factor 129:
2.06
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: August 21st, 2018
12 days agoa1 anthocyaninless1:
3.09
   Yuanming Wu et al. 2024. Phenotypic Investigation and RNA-seq of KN1 Involved in Leaf Angle Formation in Maize (Zea mays L.) Int J Mol Sci. 25:3180.     Reference: April 23rd, 2024
Gene Product: April 11th, 2013
Variation: August 25th, 2010
12 days agoprh111 protein phosphatase homolog111:
2.04
GRMZM2G015610
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: October 25th, 2021
Gene Model: April 26th, 2021
12 days agosaur7 small auxin up RNA7:
1.07
GRMZM2G414727
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: November 26th, 2021
Gene Model: April 17th, 2021
12 days agopin9 PIN-formed protein9:
3.06
GRMZM5G859099
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: April 3rd, 2024
Gene Model: January 24th, 2013
12 days agod1 dwarf plant1:
3.03
GRMZM2G036340
Yuanming Wu et al. 2024. Phenotypic Investigation and RNA-seq of KN1 Involved in Leaf Angle Formation in Maize (Zea mays L.) Int J Mol Sci. 25:3180.     Reference: April 23rd, 2024
Gene Product: October 25th, 2014
Variation: October 30th, 2014
Gene Model: October 2nd, 2012
12 days agotps11 terpene synthase11:
10.03
GRMZM2G127087
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: September 3rd, 2008
Variation: September 3rd, 2008
Gene Model: August 22nd, 2012
12 days agolox10 lipoxygenase10:
4.09
GRMZM2G015419
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: January 3rd, 2018
Variation: February 28th, 2020
Gene Model: October 29th, 2015
12 days agobzip7 bZIP-transcription factor 7:
7.03
GRMZM2G006578
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Variation: September 8th, 2018
Gene Model: September 8th, 2018
12 days agonactf36 NAC-transcription factor 36:
2.04
GRMZM2G081930
Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Variation: September 1st, 2003
Gene Model: February 15th, 2018
12 days agocko1 cytokinin oxidase1:
3.02
GRMZM2G146644
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: April 4th, 2014
Variation: September 1st, 2003
Gene Model: March 21st, 2014
12 days agoumc1151  :
5.03
GRMZM2G150893
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Variation: September 1st, 2003
Gene Model: March 12th, 2021
12 days agonactf43 NAC-transcription factor43:
1.05
GRMZM2G082709
Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Variation: September 1st, 2003
Gene Model: November 15th, 2016
12 days agocrr1 cytokinin response regulator1:
2.01 - 2.01
GRMZM2G040736
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: June 30th, 2017
Variation: August 5th, 2021
Gene Model: October 23rd, 2013
12 days agoabi16 ABI3-VP1-transcription factor 16:
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: January 29th, 2022
12 days agoabi28 ABI3-VP1-transcription factor 28:
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: January 29th, 2022
12 days agoarftf15 ARF-transcription factor 15:
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: January 29th, 2022
12 days agoarftf16 ARF-transcription factor 16:
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: January 29th, 2022
Variation: January 10th, 2020
12 days agoarftf28 ARF-transcription factor 28:
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: January 29th, 2022
Variation: September 6th, 2023
12 days agoarftf34 ARF-transcription factor 34:
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: January 29th, 2022
12 days agoarr7 ARR-B-transcription factor 7:
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: June 30th, 2017
12 days agobes1 brassinosteroid insensitive EMS-suppressor homolog1:
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: May 4th, 2022
Variation: June 27th, 2022
12 days agonactf108 NAC-transcription factor 108:
 
   Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Gene Product: July 8th, 2019
Variation: May 4th, 2019
12 days agonactf11 NAC-transcription factor 11:
 
   Ran Yang et al. 2024. ZmNAC17 Regulates Mesocotyl Elongation by Mediating Auxin and ROS Biosynthetic Pathways in Maize Int J Mol Sci. 25:4585.     Reference: April 23rd, 2024
Variation: April 23rd, 2024
12 days agonactf127 NAC-transcription factor 127:
 
   Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Gene Product: December 12th, 2022
12 days agonactf129 NAC-transcription factor 129:
 
GRMZM2G027309
Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Gene Product: July 8th, 2019
Gene Model: July 2nd, 2019
12 days agonactf130 NAC-transcription factor 130:
 
   Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Gene Product: July 8th, 2019
12 days agonactf132 NAC-transcription factor 132:
 
   Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Gene Product: July 8th, 2019
Variation: March 3rd, 2017
12 days agonactf25 NAC-transcription factor 25:
 
   Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.   LOC_Os11g03300 (MSU/TIGR) Reference: April 23rd, 2024
Gene Product: July 8th, 2019
Variation: September 22nd, 2015
12 days agonactf46 NAC-transcription factor 46:
 
   Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Gene Product: July 8th, 2019
12 days agonactf49 NAC-transcription factor 49:
 
   Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Gene Product: July 8th, 2019
Variation: March 3rd, 2017
12 days agonactf6 NAC-transcription factor 6:
 
   Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Gene Product: July 8th, 2019
12 days agonactf60 NAC-transcription factor 60:
 
   Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Gene Product: July 8th, 2019
12 days agonactf69 NAC-transcription factor 69:
 
GRMZM2G078954
Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Gene Product: July 8th, 2019
Gene Model: July 6th, 2019
12 days agonactf70 NAC-transcription factor 70:
 
   Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Gene Product: July 8th, 2019
12 days agonactf78 NAC-transcription factor 78:
 
   Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Variation: December 7th, 2023
12 days agonactf8 NAC-transcription factor 8:
 
   Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Gene Product: July 8th, 2019
12 days agonactf82 NAC-transcription factor 82:
 
   Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Gene Product: July 8th, 2019
Variation: September 30th, 2018
12 days agonactf87 NAC-transcription factor 87:
 
   Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Gene Product: July 8th, 2019
12 days agonactf99 NAC-transcription factor 99:
 
GRMZM2G078954
Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Gene Product: July 8th, 2019
Gene Model: May 28th, 2019
12 days agozim10 ZIM-transcription factor 10:
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: February 24th, 2021
12 days agozim15 ZIM-transcription factor 15:
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: February 24th, 2021
12 days agozim33 ZIM-transcription factor 33:
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: February 24th, 2021
12 days agobzip113 bZIP-transcription factor 113:
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Variation: April 25th, 2023
12 days agogar3 gibberellin responsive3:
8.05
GRMZM2G142705
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Variation: March 20th, 2021
Gene Model: January 22nd, 2016
12 days agoca2p6 CCAAT-HAP2-transcription factor 26:
1.08
GRMZM5G829103
Junqiao Song et al. 2024. Exploiting genomic tools for genetic dissection and improving the resistance to Fusarium stalk rot in tropical maize. Theor Appl Genet. 137:109.     Reference: April 23rd, 2024
Gene Product: August 9th, 2016
Variation: December 17th, 2016
Gene Model: December 17th, 2016
12 days agonactf53 NAC-transcription factor 53:
1.01
GRMZM2G059428
Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Variation: May 6th, 2016
Gene Model: May 6th, 2016
12 days agobhlh65 bHLH-transcription factor 65:
 
GRMZM2G387528
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.   AT1G09530 (TAIR)
LOC_Os05g04740 (MSU/TIGR)
Reference: April 23rd, 2024
Gene Product: September 14th, 2016
Variation: August 5th, 2022
Gene Model: May 26th, 2015
12 days agobnl13.05a  :
8.01
GRMZM2G041308
Ran Yang et al. 2024. ZmNAC17 Regulates Mesocotyl Elongation by Mediating Auxin and ROS Biosynthetic Pathways in Maize Int J Mol Sci. 25:4585.     Reference: April 23rd, 2024
Variation: September 1st, 2003
Gene Model: September 14th, 2018
12 days agobnl6.20  :
2.08
GRMZM2G056612
Yuanming Wu et al. 2024. Phenotypic Investigation and RNA-seq of KN1 Involved in Leaf Angle Formation in Maize (Zea mays L.) Int J Mol Sci. 25:3180.     Reference: April 23rd, 2024
Variation: September 1st, 2003
Gene Model: February 2nd, 2018
12 days agobx5 benzoxazinone synthesis5:
4.01
GRMZM2G063756
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: October 24th, 2011
Variation: October 27th, 2011
Gene Model: October 24th, 2011
12 days agonactf48 NAC-transcription factor 48:
1.06
GRMZM2G054252
Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Variation: January 27th, 2017
Gene Model: January 27th, 2017
12 days agocdj2 chaperone DNA J2:
1.09
   Junqiao Song et al. 2024. Exploiting genomic tools for genetic dissection and improving the resistance to Fusarium stalk rot in tropical maize. Theor Appl Genet. 137:109.     Reference: April 23rd, 2024
Gene Product: September 1st, 2003
Variation: September 29th, 2012
12 days agokrp2 kinesin-related protein2:
9.03
GRMZM2G136838
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: September 18th, 2023
Variation: January 4th, 2013
Gene Model: March 3rd, 2016
12 days agoufg71  :
9.03
GRMZM5G870176
Yuanming Wu et al. 2024. Phenotypic Investigation and RNA-seq of KN1 Involved in Leaf Angle Formation in Maize (Zea mays L.) Int J Mol Sci. 25:3180.     Reference: April 23rd, 2024
Gene Product: October 7th, 2016
Gene Model: October 12th, 2018
12 days agohk3 histidine kinase3:
5.03
GRMZM2G158252
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: May 20th, 2016
Variation: July 14th, 2008
Gene Model: April 25th, 2013
12 days agolox11 lipoxygenase11:
5.04
GRMZM2G009479
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: January 3rd, 2018
Variation: June 10th, 2014
Gene Model: June 10th, 2014
12 days agopox3 guaiacol peroxidase3:
6.05
GRMZM2G135108
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: September 1st, 2003
Variation: January 7th, 2016
Gene Model: February 9th, 2015
12 days agobrs1 brassinosteroid synthesis1:
1.03
GRMZM2G065635
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.   AT3G50660 (TAIR) Reference: April 23rd, 2024
Gene Product: September 20th, 2010
Variation: November 7th, 2013
Gene Model: October 3rd, 2012
12 days agoras18A1 ras-related protein18A1:
 
GRMZM2G176677
Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Variation: January 24th, 2011
Gene Model: July 22nd, 2014
12 days agonrp1 no-apical-meristem-related protein1:
 
GRMZM2G062650
Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Gene Product: July 8th, 2019
Variation: March 31st, 2011
Gene Model: July 28th, 2016
12 days agonced3 nine-cis-epoxycarotenoid dioxygenase3:
 
GRMZM5G858784
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: September 20th, 2012
Gene Model: September 20th, 2012
12 days agonced5 nine-cis-epoxycarotenoid dioxygenase5:
 
GRMZM2G417954
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: September 20th, 2012
Variation: September 1st, 2011
Gene Model: September 20th, 2012
12 days agodbp4 DRE-binding protein4:
 
GRMZM2G380377
Yuanming Wu et al. 2024. Phenotypic Investigation and RNA-seq of KN1 Involved in Leaf Angle Formation in Maize (Zea mays L.) Int J Mol Sci. 25:3180.     Reference: April 23rd, 2024
Gene Product: April 10th, 2013
Variation: April 10th, 2013
Gene Model: February 16th, 2012
12 days agobx12 benzoxazinone synthesis12:
 
GRMZM2G023325
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: July 8th, 2013
Variation: July 8th, 2013
Gene Model: July 8th, 2013
12 days agoelm2 elongated mesocotyl2:
 
GRMZM2G101004
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: September 24th, 2014
Variation: September 24th, 2014
Gene Model: November 18th, 2013
12 days agorca3 RUBISCO activase3:
 
GRMZM2G162282
Yuanming Wu et al. 2024. Phenotypic Investigation and RNA-seq of KN1 Involved in Leaf Angle Formation in Maize (Zea mays L.) Int J Mol Sci. 25:3180.     Reference: April 23rd, 2024
Gene Product: October 28th, 2014
Gene Model: February 11th, 2014
12 days agocko4b cytokinin oxidase4b:
 
GRMZM2G024476
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: July 19th, 2021
Gene Model: April 4th, 2014
12 days agoks4 kaurene synthase4:
 
AC214360.3_FG001
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: August 16th, 2012
Gene Model: October 27th, 2014
12 days agoko2 kaurene oxidase2:
 
GRMZM2G161472
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: October 27th, 2014
Gene Model: October 27th, 2014
12 days agoga2ox4 gibberellin 2-oxidase4:
 
GRMZM2G153359
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: October 27th, 2014
Gene Model: October 27th, 2014
12 days agoga2ox9 gibberellin 2-oxidase9:
 
GRMZM2G152354
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: October 27th, 2014
Gene Model: October 27th, 2014
12 days agoga16,17ox1 gibberellin 16,17-oxidase1:
 
GRMZM2G177104
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: October 30th, 2014
Gene Model: October 29th, 2014
12 days agopox1 guaiacol peroxidase1:
 
GRMZM2G104394
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: September 1st, 2003
Gene Model: February 9th, 2015
12 days agofnsi1 flavone synthase typeI1:
 
GRMZM2G099467
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.   AT5G24530 (TAIR) Reference: April 23rd, 2024
Gene Product: August 15th, 2015
Variation: August 14th, 2015
Gene Model: August 14th, 2015
12 days agofnsii1 flavone synthase typeII1:
 
GRMZM2G148441
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: August 14th, 2015
Gene Model: August 14th, 2015
12 days agofnsi2 flavone synthase typeI2:
 
GRMZM2G475380
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.   AT5G24530 (TAIR) Reference: April 23rd, 2024
Gene Product: August 15th, 2015
Gene Model: August 14th, 2015
12 days agoprx35 peroxidase35:
 
GRMZM2G177792
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: September 18th, 2015
Gene Model: September 18th, 2015
12 days agoyuc6 Yucca6:
 
GRMZM2G019515
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: June 18th, 2018
Variation: July 9th, 2021
Gene Model: June 17th, 2016
12 days agobx13 benzoxazinone synthesis13:
 
AC148152.3_FG005
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: June 20th, 2016
Variation: June 20th, 2016
Gene Model: June 20th, 2016
12 days agoprh90 protein phosphatase homolog90:
 
GRMZM2G443509
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: October 25th, 2021
Gene Model: September 28th, 2016
12 days agoprh6 protein phosphatase homolog6:
 
GRMZM2G308615
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: October 25th, 2021
Gene Model: October 18th, 2016
12 days agocyc11 cyclin11:
 
GRMZM2G161382
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: June 26th, 2009
Variation: May 2nd, 2021
Gene Model: December 21st, 2016
12 days agobrc2 brassinosteroid catabolism2:
 
GRMZM2G047684
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.   AT2G26710 (TAIR)
LOC_Os02g11020 (MSU/TIGR)
Reference: April 23rd, 2024
Gene Product: July 6th, 2017
Gene Model: July 6th, 2017
12 days agolox13 lipoxygenase13:
 
GRMZM5G822593
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: January 3rd, 2018
Gene Model: July 18th, 2017
12 days agoyuc9 yucca9:
 
GRMZM2G333478
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: June 18th, 2018
Gene Model: August 19th, 2017
12 days agonut1 necrotic upper tips1:
 
GRMZM2G041668
Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.   AT1G12260 (TAIR)
LOC_Os06g01480 (MSU/TIGR)
Reference: April 23rd, 2024
Gene Product: July 8th, 2019
Variation: August 11th, 2020
Gene Model: November 15th, 2017
12 days agovq10 VQ motif-transcription factor10:
 
GRMZM2G118172
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: August 31st, 2019
Gene Model: August 31st, 2019
12 days agovq14 VQ motif-transcription factor14:
 
GRMZM2G369742
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: August 31st, 2019
Gene Model: August 31st, 2019
12 days agovq21 VQ motif-transcription factor21:
 
AC194056.3_FG008
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: August 31st, 2019
Gene Model: August 31st, 2019
12 days agovq29 VQ motif-transcription factor29:
 
AC207043.3_FG002
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: August 31st, 2019
Gene Model: August 31st, 2019
12 days agovq35 VQ motif-transcription factor35:
 
GRMZM2G099691
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: August 31st, 2019
Gene Model: August 31st, 2019
12 days agovq41 VQ motif-transcription factor41:
 
GRMZM2G316033
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: August 31st, 2019
Gene Model: August 31st, 2019
12 days agovq53 VQ motif-transcription factor53:
 
GRMZM2G333049
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: August 31st, 2019
Gene Model: August 31st, 2019
12 days agovq56 VQ motif-transcription factor56:
 
GRMZM2G129815
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: August 31st, 2019
Gene Model: August 31st, 2019
12 days agovq58 VQ motif-transcription factor58:
 
GRMZM2G180262
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: August 31st, 2019
Gene Model: August 31st, 2019
12 days agoaas8 auxin amido synthetase8:
 
GRMZM2G053338
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: October 21st, 2019
Gene Model: October 21st, 2019
12 days agoaas2 auxin amido synthetase2:
 
GRMZM2G378106
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: October 21st, 2019
Gene Model: October 21st, 2019
12 days agoaas7 auxin amido synthetase7:
 
GRMZM2G033359
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: October 21st, 2019
Gene Model: October 21st, 2019
12 days agoprh81 protein phosphatase homolog81:
5.04
GRMZM2G360455
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: October 25th, 2021
Gene Model: August 28th, 2021
12 days agopx16 peroxidase16:
 
GRMZM2G025441
Ran Yang et al. 2024. ZmNAC17 Regulates Mesocotyl Elongation by Mediating Auxin and ROS Biosynthetic Pathways in Maize Int J Mol Sci. 25:4585.     Reference: April 23rd, 2024
Gene Product: September 18th, 2015
Gene Model: July 9th, 2020
12 days agoapx7 ascorbate peroxidase7:
 
GRMZM2G083128
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: October 15th, 2020
Gene Model: October 15th, 2020
12 days agopx18 peroxidase18:
 
GRMZM2G108153
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: September 18th, 2015
Gene Model: November 23rd, 2020
12 days agopx19 peroxidase19:
 
GRMZM2G107228
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: September 18th, 2015
Gene Model: January 18th, 2021
12 days agobsk2 brassinosteroid-signaling kinase2:
 
GRMZM2G169080
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: May 13th, 2014
Gene Model: April 20th, 2021
12 days agoebf2 EIN3-binding F-box protein2:
 
GRMZM2G069649
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: April 27th, 2022
Gene Model: June 25th, 2021
12 days agopx21 peroxidase21:
 
AC205413.4_FG001
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: September 18th, 2015
Gene Model: September 8th, 2021
12 days agoprh127 protein phosphatase homolog127:
 
GRMZM2G057907
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: October 25th, 2021
Gene Model: November 24th, 2021
12 days agosaur8 small auxin up RNA8:
 
GRMZM2G033871
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: November 26th, 2021
Gene Model: November 26th, 2021
12 days agosaur10 small auxin up RNA10:
 
GRMZM2G407969
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: November 26th, 2021
Gene Model: November 26th, 2021
12 days agosaur11 small auxin up RNA11:
 
GRMZM2G146108
Ran Yang et al. 2024. ZmNAC17 Regulates Mesocotyl Elongation by Mediating Auxin and ROS Biosynthetic Pathways in Maize Int J Mol Sci. 25:4585.     Reference: April 23rd, 2024
Gene Product: November 26th, 2021
Gene Model: November 26th, 2021
12 days agosaur36 small auxin up RNA36:
 
GRMZM2G107900
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: November 26th, 2021
Gene Model: November 26th, 2021
12 days agosaur49 small auxin up RNA49:
 
GRMZM2G113135
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: November 26th, 2021
Gene Model: November 26th, 2021
12 days agosaur54 small auxin up RNA54:
 
GRMZM2G312274
Ran Yang et al. 2024. ZmNAC17 Regulates Mesocotyl Elongation by Mediating Auxin and ROS Biosynthetic Pathways in Maize Int J Mol Sci. 25:4585.     Reference: April 23rd, 2024
Gene Product: November 26th, 2021
Gene Model: November 26th, 2021
12 days agosaur55 small auxin up RNA55:
 
GRMZM2G391596
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: November 26th, 2021
Gene Model: November 26th, 2021
12 days agosaur73 small auxin up RNA73:
 
GRMZM2G083980
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: November 26th, 2021
Gene Model: November 26th, 2021
12 days agopx23 peroxidase23:
 
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.   AT5G05340 (TAIR) Reference: April 23rd, 2024
Gene Product: September 18th, 2015
12 days agoprx12 peroxidase12:
 
GRMZM2G108207
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: September 18th, 2015
Gene Model: January 13th, 2022
12 days agoxth5 xyloglucan endo-transglycosylase/hydrolase5:
5.03
GRMZM2G413006
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: March 23rd, 2024
Gene Model: May 10th, 2020
12 days agocrr9 cytokinin response regulator9:
 
GRMZM2G129954
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: June 30th, 2017
Gene Model: August 12th, 2022
12 days agopin2 PIN-formed protein2:
5.06
GRMZM2G074267
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: April 21st, 2014
Variation: June 11th, 2007
Gene Model: June 7th, 2012
12 days agosamt1 S-adenosyl methionine transporter1:
5.07
GRMZM2G042027
Junqiao Song et al. 2024. Exploiting genomic tools for genetic dissection and improving the resistance to Fusarium stalk rot in tropical maize. Theor Appl Genet. 137:109.     Reference: April 23rd, 2024
Gene Product: June 6th, 2022
Gene Model: May 23rd, 2020
12 days agoebf1 EIN3-binding F-box protein1:
6.03
GRMZM2G137582
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.   AT2G25490 (TAIR)
LOC_Os06g40360 (MSU/TIGR)
Reference: April 23rd, 2024
Gene Product: April 27th, 2022
Gene Model: October 6th, 2016
12 days agopin1 PIN-formed protein1:
9.01
GRMZM2G098643
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: April 21st, 2014
Variation: January 20th, 2015
Gene Model: January 24th, 2013
12 days agosnrkII5 SnRK2 serine threonine kinase5:
10.07
GRMZM2G110908
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: April 14th, 2018
Gene Model: February 11th, 2015
12 days agoein2 ethylene insensitive 2:
3.01
GRMZM2G068217
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.   AT5G03280 (TAIR) Reference: April 23rd, 2024
Variation: March 6th, 2024
Gene Model: March 1st, 2015
12 days agonactf23 NAC-transcription factor 23:
8.08
GRMZM2G068973
Fan, K et al. 2014. Molecular evolution and expansion analysis of the NAC transcription factor in Zea mays. PLoS One. 9:e111837.     Reference: April 23rd, 2024
Variation: March 31st, 2005
Gene Model: June 14th, 2019
12 days agocko2 cytokinin oxidase 2:
3.05
GRMZM2G050997
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: July 19th, 2021
Variation: February 26th, 2008
Gene Model: March 21st, 2014
12 days agobx6 benzoxazinone synthesis6:
4.01
   Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: June 20th, 2016
Variation: April 12th, 2019
12 days agopx5 peroxidase 5:
6.05
GRMZM2G450233
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: September 18th, 2015
Gene Model: December 30th, 2015
12 days agosnrkII7 SnRK2 serine threonine protein kinase7:
2.04
GRMZM2G155593
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: April 14th, 2018
Gene Model: February 11th, 2015
12 days agozim18 ZIM-transcription factor 18:
1.08
GRMZM2G145412
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: February 24th, 2021
Gene Model: December 6th, 2016
12 days agoks3 kaurene synthase3:
2.02
GRMZM2G093603
Liu, LJ et al. 2024. Genome-wide identification of ZmMYC2 binding sites and target genes in maize BMC Genomics. 25:397.     Reference: April 23rd, 2024
Gene Product: August 16th, 2012
Variation: July 22nd, 2023
Gene Model: August 15th, 2012
13 days agobif4 barren inflorescence4:
 
   Liu, JQ et al. 2024. Overexpression of the late embryonic genesis abundant protein MGL3 improves the drought tolerance of maize (Zea mays L.) Crop Sci. :doi: 10.1002/csc2.21246.     Reference: April 22nd, 2024
Gene Product: October 16th, 2015
Variation: October 16th, 2015
13 days agowrky92 WRKY-transcription factor 92:
 
   Begcy, K et al. 2024. Maize stigmas react differently to self-/cross-pollination and fungal invasion bioRxiv preprint. :doi: 10.1101/2024.04.17.589941.     Reference: April 22nd, 2024
Variation: February 7th, 2024
13 days agomlg3 lea protein group3:
6.07
   Liu, JQ et al. 2024. Overexpression of the late embryonic genesis abundant protein MGL3 improves the drought tolerance of maize (Zea mays L.) Crop Sci. :doi: 10.1002/csc2.21246.     Reference: April 22nd, 2024
Gene Product: September 1st, 2003
Variation: September 1st, 2003
13 days agoks2 kaurene synthase2:
 
GRMZM2G093526
Begcy, K et al. 2024. Maize stigmas react differently to self-/cross-pollination and fungal invasion bioRxiv preprint. :doi: 10.1101/2024.04.17.589941.     Reference: April 22nd, 2024
Gene Product: August 16th, 2012
Gene Model: October 27th, 2014
13 days agoks5 kaurene synthase5:
 
   Begcy, K et al. 2024. Maize stigmas react differently to self-/cross-pollination and fungal invasion bioRxiv preprint. :doi: 10.1101/2024.04.17.589941.     Reference: April 22nd, 2024
Gene Product: August 16th, 2012
13 days agoko1 kaurene oxidase1:
 
GRMZM2G059308
Begcy, K et al. 2024. Maize stigmas react differently to self-/cross-pollination and fungal invasion bioRxiv preprint. :doi: 10.1101/2024.04.17.589941.     Reference: April 22nd, 2024
Gene Product: October 27th, 2014
Gene Model: October 27th, 2014
13 days agocyp30 cytochrome P450 CYP71Z16:
 
   Begcy, K et al. 2024. Maize stigmas react differently to self-/cross-pollination and fungal invasion bioRxiv preprint. :doi: 10.1101/2024.04.17.589941.     Reference: April 22nd, 2024
Gene Product: December 30th, 2022
13 days agoers14 ethylene receptor1-14:
5.01
GRMZM2G102601
Liu, JQ et al. 2024. Overexpression of the late embryonic genesis abundant protein MGL3 improves the drought tolerance of maize (Zea mays L.) Crop Sci. :doi: 10.1002/csc2.21246.     Reference: April 22nd, 2024
Variation: May 16th, 2014
Gene Model: December 28th, 2016
13 days agocpps2 copalyl diphosphate synthase2:
1.04
GRMZM2G044481
Begcy, K et al. 2024. Maize stigmas react differently to self-/cross-pollination and fungal invasion bioRxiv preprint. :doi: 10.1101/2024.04.17.589941.     Reference: April 22nd, 2024
Gene Product: August 16th, 2012
Variation: January 22nd, 2018
Gene Model: September 12th, 2011
13 days agotps6 terpene synthase6:
10.03
GRMZM2G127087
Begcy, K et al. 2024. Maize stigmas react differently to self-/cross-pollination and fungal invasion bioRxiv preprint. :doi: 10.1101/2024.04.17.589941.     Reference: April 22nd, 2024
Gene Product: September 3rd, 2008
Variation: May 28th, 2012
Gene Model: May 28th, 2012
14 days agohex2 hexokinase2:
6.04 - 6.05
GRMZM2G432801
Lily Chen et al. 2024. Sugar sensing in C4 source leaves: a gap that needs to be filled. J Exp Bot. :doi: 10.1093/jxb/erae166.     Reference: April 21st, 2024
Gene Product: September 15th, 2013
Variation: February 15th, 2010
Gene Model: September 15th, 2013
14 days agosps1 sucrose phosphate synthase1:
8.06
   Lily Chen et al. 2024. Sugar sensing in C4 source leaves: a gap that needs to be filled. J Exp Bot. :doi: 10.1093/jxb/erae166.     Reference: April 21st, 2024
Gene Product: September 1st, 2003
Variation: January 15th, 2015
14 days agotrps1 trehalose-6-phosphate synthase1:
 
GRMZM2G068943
Lily Chen et al. 2024. Sugar sensing in C4 source leaves: a gap that needs to be filled. J Exp Bot. :doi: 10.1093/jxb/erae166.     Reference: April 21st, 2024
Gene Product: October 3rd, 2020
Gene Model: May 28th, 2012
14 days agohex5 hexokinase5:
 
GRMZM5G856653
Lily Chen et al. 2024. Sugar sensing in C4 source leaves: a gap that needs to be filled. J Exp Bot. :doi: 10.1093/jxb/erae166.     Reference: April 21st, 2024
Gene Product: September 15th, 2013
Gene Model: September 15th, 2013
14 days agosnrk1a1 SNF1-related kinase alpha1-like1:
6.06
GRMZM2G105401
Lily Chen et al. 2024. Sugar sensing in C4 source leaves: a gap that needs to be filled. J Exp Bot. :doi: 10.1093/jxb/erae166.     Reference: April 21st, 2024
Gene Product: December 4th, 2020
Gene Model: February 7th, 2018
15 days agolbd51 LBD-transcription factor 51:
 
   Hao, LD et al. 2024. Characterization and expression profiles of the ZmLBD gene family in Zea mays. Mol Biol Rep. 51:554.     Reference: April 20th, 2024
Gene Product: July 28th, 2023
15 days agortcs1 rootless concerning crown and seminal roots1:
1.02
GRMZM2G092542
Hao, LD et al. 2024. Characterization and expression profiles of the ZmLBD gene family in Zea mays. Mol Biol Rep. 51:554.     Reference: April 20th, 2024
Gene Product: October 5th, 2009
Variation: October 5th, 2009
Gene Model: July 23rd, 2013
15 days agoial1 ig1-as2 like1:
8.06
GRMZM2G133806
Hao, LD et al. 2024. Characterization and expression profiles of the ZmLBD gene family in Zea mays. Mol Biol Rep. 51:554.     Reference: April 20th, 2024
Gene Product: July 28th, 2023
Variation: October 1st, 2010
Gene Model: October 9th, 2015
15 days agoig1 indeterminate gametophyte1:
3.06 - 3.07
   Hao, LD et al. 2024. Characterization and expression profiles of the ZmLBD gene family in Zea mays. Mol Biol Rep. 51:554.     Reference: April 20th, 2024
Gene Product: July 28th, 2023
Variation: October 19th, 2010
15 days agoms1 male sterile1:
6.02
   Hao, LD et al. 2024. Characterization and expression profiles of the ZmLBD gene family in Zea mays. Mol Biol Rep. 51:554.     Reference: April 20th, 2024
Gene Product: July 28th, 2023
Variation: May 19th, 2006
15 days agora2 ramosa2:
3.03 - 3.03
AC233943.1_FG002
Hao, LD et al. 2024. Characterization and expression profiles of the ZmLBD gene family in Zea mays. Mol Biol Rep. 51:554.   AT5G63090 (TAIR)
LOC_Os01g07480 (MSU/TIGR)
Os01g0169400 (Gramene)
Reference: April 20th, 2024
Gene Product: July 27th, 2009
Variation: September 19th, 2009
Gene Model: July 14th, 2011
15 days agolbd1 LBD-transcription factor 1:
 
   Hao, LD et al. 2024. Characterization and expression profiles of the ZmLBD gene family in Zea mays. Mol Biol Rep. 51:554.     Reference: April 20th, 2024
Variation: March 18th, 2021
15 days agortcl1 RTCS-like1:
9.07
AC149818.2_FG009
Hao, LD et al. 2024. Characterization and expression profiles of the ZmLBD gene family in Zea mays. Mol Biol Rep. 51:554.     Reference: April 20th, 2024
Variation: January 20th, 2016
Gene Model: May 18th, 2012
16 days agorap2 rap2.7 orthologue:
8.06
GRMZM2G700665
Adak, A et al. 2024. Photoperiod associated late flowering reaction norm: Dissecting loci and genomic-enviromic associated prediction in maize Field Crop Res. 311:109380.     Reference: April 19th, 2024
Gene Product: July 5th, 2019
Variation: July 24th, 2019
Gene Model: November 20th, 2012
16 days agopebp5 phosphatidylethanolamine-binding protein:
 
   Adak, A et al. 2024. Photoperiod associated late flowering reaction norm: Dissecting loci and genomic-enviromic associated prediction in maize Field Crop Res. 311:109380.     Reference: April 19th, 2024
Gene Product: March 19th, 2024
Variation: January 31st, 2011
16 days agopebp8 phosphatidylethanolamine-binding protein8:
 
GRMZM2G179264
Adak, A et al. 2024. Photoperiod associated late flowering reaction norm: Dissecting loci and genomic-enviromic associated prediction in maize Field Crop Res. 311:109380.     Reference: April 19th, 2024
Gene Product: March 19th, 2024
Variation: June 19th, 2015
Gene Model: May 6th, 2011
16 days agopebp19 phosphatidylethanolamine-binding protein:
 
   Adak, A et al. 2024. Photoperiod associated late flowering reaction norm: Dissecting loci and genomic-enviromic associated prediction in maize Field Crop Res. 311:109380.     Reference: April 19th, 2024
Gene Product: March 19th, 2024
Variation: December 15th, 2010
16 days agoc1 colored aleurone1:
9.01
   Dermail, A et al. 2024. Haploid identification in maize Frontiers in Plant Science. 15:1378421.     Reference: April 19th, 2024
Gene Product: June 16th, 2015
Variation: February 9th, 2024
16 days agoid1 indeterminate growth1:
1.08
   Adak, A et al. 2024. Photoperiod associated late flowering reaction norm: Dissecting loci and genomic-enviromic associated prediction in maize Field Crop Res. 311:109380.     Reference: April 19th, 2024
Gene Product: January 3rd, 2015
Variation: March 22nd, 2023
16 days agopl1 purple plant1:
6.04
   Dermail, A et al. 2024. Haploid identification in maize Frontiers in Plant Science. 15:1378421.     Reference: April 19th, 2024
Gene Product: June 16th, 2015
Variation: March 28th, 2013
16 days agor1 colored1:
10.06
   Dermail, A et al. 2024. Haploid identification in maize Frontiers in Plant Science. 15:1378421.     Reference: April 19th, 2024
Gene Product: October 13th, 2010
Variation: February 9th, 2024
16 days agocct1 CO CO-LIKE TIMING OF CAB1 protein domain1:
 
GRMZM2G381691
Adak, A et al. 2024. Photoperiod associated late flowering reaction norm: Dissecting loci and genomic-enviromic associated prediction in maize Field Crop Res. 311:109380.   AT5G24930 (TAIR)
LOC_Os07g15770 (MSU/TIGR)
Os07g0261200 (Gramene)
Reference: April 19th, 2024
Gene Product: June 18th, 2018
Variation: May 22nd, 2021
Gene Model: July 17th, 2012
16 days agoereb100 AP2-EREBP-transcription factor 100:
 
   Hongpeng Han et al. 2024. Function analysis of transcription factor OSR1 regulating osmotic stress resistance in maize Biochem Biophys Res Commun. :doi: 10.1016/j.bbrc.2024.149956.     Reference: April 19th, 2024
Variation: April 19th, 2024
16 days agomads69 MADS-transcription factor 69:
 
   Adak, A et al. 2024. Photoperiod associated late flowering reaction norm: Dissecting loci and genomic-enviromic associated prediction in maize Field Crop Res. 311:109380.     Reference: April 19th, 2024
Variation: October 5th, 2018
16 days agopld3 phospholipase D3:
 
GRMZM2G043340
Dermail, A et al. 2024. Haploid identification in maize Frontiers in Plant Science. 15:1378421.     Reference: April 19th, 2024
Gene Product: August 9th, 2016
Variation: December 9th, 2021
Gene Model: July 4th, 2019
16 days agomatl1 matrilineal1:
 
GRMZM2G471240
Dermail, A et al. 2024. Haploid identification in maize Frontiers in Plant Science. 15:1378421.     Reference: April 19th, 2024
Gene Product: June 12th, 2020
Variation: February 10th, 2017
Gene Model: January 25th, 2017
16 days agodmp1 DUF679 domain membrane protein1:
 
GRMZM2G465053
Dermail, A et al. 2024. Haploid identification in maize Frontiers in Plant Science. 15:1378421.   AT5G39650 (TAIR) Reference: April 19th, 2024
Gene Product: June 10th, 2019
Variation: June 10th, 2019
Gene Model: June 10th, 2019
16 days agoconz1 constans1:
9.03
   Adak, A et al. 2024. Photoperiod associated late flowering reaction norm: Dissecting loci and genomic-enviromic associated prediction in maize Field Crop Res. 311:109380.     Reference: April 19th, 2024
Gene Product: June 18th, 2018
Variation: July 28th, 2008
17 days agoubi1 ubiquitin1:
 
GRMZM2G409726
Wang, X et al. 2024. Jasmonate mimic modulates cell elongation by regulating antagonistic bHLH transcription factors via brassinosteroid signaling Plant Physiol. :doi: 10.1093/plphys/kiae217.     Reference: April 18th, 2024
Gene Product: September 1st, 2003
Variation: November 20th, 2014
Gene Model: November 18th, 2014
17 days agobzr1 BZR-transcription factor 1:
 
   Wang, X et al. 2024. Jasmonate mimic modulates cell elongation by regulating antagonistic bHLH transcription factors via brassinosteroid signaling Plant Physiol. :doi: 10.1093/plphys/kiae217.     Reference: April 18th, 2024
Gene Product: May 4th, 2022
Variation: June 27th, 2022
17 days agobhlh86 bHLH-transcription factor 86:
7.03
GRMZM5G818643
Wang, X et al. 2024. Jasmonate mimic modulates cell elongation by regulating antagonistic bHLH transcription factors via brassinosteroid signaling Plant Physiol. :doi: 10.1093/plphys/kiae217.     Reference: April 18th, 2024
Variation: September 1st, 2003
Gene Model: September 2nd, 2018
17 days agobhlh3 bHLH-transcription factor 3:
1.03
GRMZM2G180452
Wang, X et al. 2024. Jasmonate mimic modulates cell elongation by regulating antagonistic bHLH transcription factors via brassinosteroid signaling Plant Physiol. :doi: 10.1093/plphys/kiae217.     Reference: April 18th, 2024
Variation: January 31st, 2017
Gene Model: January 31st, 2017
17 days agomyc7 myc transcription factor7:
1.05
GRMZM2G001930
Wang, X et al. 2024. Jasmonate mimic modulates cell elongation by regulating antagonistic bHLH transcription factors via brassinosteroid signaling Plant Physiol. :doi: 10.1093/plphys/kiae217.     Reference: April 18th, 2024
Gene Product: September 14th, 2016
Variation: June 20th, 2022
Gene Model: July 28th, 2016
17 days agoibh1 increased leaf inclination1-binding bhlh 1:
 
GRMZM2G388823
Wang, X et al. 2024. Jasmonate mimic modulates cell elongation by regulating antagonistic bHLH transcription factors via brassinosteroid signaling Plant Physiol. :doi: 10.1093/plphys/kiae217.   AT2G43060 (TAIR) Reference: April 18th, 2024
Gene Product: September 14th, 2016
Variation: January 28th, 2020
Gene Model: January 28th, 2020
17 days agoxth1 xyloglucan endo-transglycosylase/hydrolase1:
10.03
GRMZM2G119783
Wang, X et al. 2024. Jasmonate mimic modulates cell elongation by regulating antagonistic bHLH transcription factors via brassinosteroid signaling Plant Physiol. :doi: 10.1093/plphys/kiae217.     Reference: April 18th, 2024
Gene Product: March 23rd, 2024
Variation: January 25th, 2015
Gene Model: September 5th, 2012
18 days agoshki1 shikimate kinase1:
 
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.   AT2G21940 (TAIR) Reference: April 17th, 2024
Gene Product: January 2nd, 2023
18 days agoskl1 shikimate kinase-like1:
 
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.   AT3G26900 (TAIR) Reference: April 17th, 2024
Gene Product: January 2nd, 2023
18 days agoshki2 shikimate kinase2:
 
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.   AT2G21940 (TAIR) Reference: April 17th, 2024
Gene Product: January 2nd, 2023
18 days agoadt3 arogenate dehydratase3:
 
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: March 4th, 2024
18 days agome10 malic enzyme10:
 
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: June 27th, 2019
18 days agogtr2 glutamyl-tRNA reductase2:
 
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: October 23rd, 2023
18 days agoadt1 arogenate dehydratase1:
 
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: March 4th, 2024
18 days agoadt5 arogenate dehydratase5:
 
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: March 4th, 2024
18 days agoadt7 arogenate dehydratase7:
 
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: March 4th, 2024
18 days agoZm00001d053374  :
 
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: April 17th, 2024
18 days agoLOC100274239  :
 
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: April 17th, 2024
18 days agogtr1 glutamyl-tRNA reductase1:
10.07
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: October 23rd, 2023
Variation: October 23rd, 2023
18 days agompec1 magnesium-protoporphyrin ester cyclase1:
8.01
GRMZM2G081462
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.   AT3G56940 (TAIR) Reference: April 17th, 2024
Gene Product: July 7th, 2022
Variation: July 7th, 2022
Gene Model: September 13th, 2018
18 days agogln6 glutamine synthetase6:
1.02 - 1.03
GRMZM2G050514
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: December 7th, 2012
Gene Model: August 7th, 2014
18 days agoarodh3 arogenate dehydrogenase3:
6.01
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: July 7th, 2018
Variation: July 7th, 2018
18 days agopat38 protein S-acyltransferase38:
10.07
GRMZM2G092571
Lin, M et al. 2024. Integrative multi-omic analysis identifies genes associated with cuticular wax biogenesis in adult maize leaves bioRxiv preprint. :doi: 10.1101/2024.04.09.588685.     Reference: April 17th, 2024
Gene Product: February 26th, 2022
Gene Model: July 21st, 2021
18 days agoeps1 enolpyruvylshikimate phosphate synthase1:
9.07
GRMZM5G877500
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: April 18th, 2020
Variation: November 15th, 2018
Gene Model: July 27th, 2016
18 days agobx1 benzoxazinless1:
4.00
GRMZM2G085381
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: October 14th, 2011
Variation: April 12th, 2019
Gene Model: October 14th, 2011
18 days agod8 dwarf plant8:
1.09
GRMZM2G144744
Taikui Zhang et al. 2024. Phylogenomic profiles of whole-genome duplications in Poaceae and landscape of differential duplicate retention and losses among major Poaceae lineages Nat Commun. 15:3305.     Reference: April 17th, 2024
Gene Product: February 12th, 2007
Variation: August 29th, 2007
Gene Model: May 11th, 2011
18 days agogdh1 glutamic dehydrogenase1:
1.11
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: August 7th, 2006
18 days agogot1 glutamate-oxaloacetate transaminase1:
3.02
GRMZM2G094712
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: October 21st, 2021
Variation: September 1st, 2003
Gene Model: August 6th, 2014
18 days agogot2 glutamate-oxaloacetate transaminase2:
5.08
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: October 21st, 2021
Variation: September 1st, 2003
18 days agogot3 glutamate-oxaloacetic transaminase3:
5.03 - 5.04
GRMZM2G146677
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: October 21st, 2021
Variation: September 1st, 2003
Gene Model: July 30th, 2014
18 days agolls1 lethal leaf spot1:
1.01
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: November 5th, 2014
Variation: March 18th, 2022
18 days agonec4 necrotic4:
2.02
GRMZM5G870342
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: December 17th, 2014
Variation: January 31st, 2022
Gene Model: December 17th, 2014
18 days agoorp1 orange pericarp1:
4.05
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: May 19th, 2006
18 days agoorp2 orange pericarp2:
10.03
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: September 1st, 2003
18 days agopdk2 pyruvate, orthophosphate dikinase2:
8.04
GRMZM2G097457
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: July 28th, 2014
Variation: December 19th, 2017
Gene Model: November 21st, 2012
18 days agopep1 phosphoenolpyruvate carboxylase1:
9.03
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: May 27th, 2020
18 days agopep3 phosphoenolpyruvate carboxylase3:
4.08
GRMZM2G074122
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: April 10th, 2015
Gene Model: August 13th, 2014
18 days agorf2 restorer of fertility2:
9.03
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: December 18th, 2006
18 days agosad1 shikimate dehydrogenase1:
10.03 - 10.04
GRMZM2G014376
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: January 24th, 2015
Gene Model: January 24th, 2015
18 days agots2 tassel seed2:
1.03
   Taikui Zhang et al. 2024. Phylogenomic profiles of whole-genome duplications in Poaceae and landscape of differential duplicate retention and losses among major Poaceae lineages Nat Commun. 15:3305.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: September 1st, 2003
18 days agome5 malic enzyme5:
6.05
GRMZM5G886257
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: June 27th, 2019
Variation: August 16th, 2011
Gene Model: August 27th, 2018
18 days agofnr2 ferredoxin NADP reductase2:
7.01
GRMZM2G011858
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: May 11th, 2021
Variation: October 9th, 2009
Gene Model: September 4th, 2018
18 days agopsan1 photosystem I N subunit1:
3.05
GRMZM2G080107
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: May 12th, 2013
Gene Model: May 9th, 2013
18 days agopsah1 photosystem I H subunit1:
6.07
GRMZM2G451224
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: May 7th, 2013
Gene Model: May 9th, 2013
18 days agocpx2 coproporphyrinogen III oxidase2:
10.06
GRMZM2G032282
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: December 17th, 2014
Variation: September 22nd, 2011
Gene Model: September 22nd, 2011
18 days agoles22 lesion22:
1.04
GRMZM2G044074
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: April 1st, 2015
Gene Model: August 16th, 2017
18 days agoadc1 arginine decarboxylase1:
9.03
GRMZM2G396553
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: August 18th, 2020
Variation: September 1st, 2003
Gene Model: March 7th, 2018
18 days agopal1 phenylalanine ammonia lyase homolog1:
5.05
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: August 13th, 2022
Variation: September 24th, 2014
18 days agopdk1 pyruvate, orthophosphate dikinase1:
6.05
GRMZM2G306345
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: July 28th, 2014
Variation: April 18th, 2018
Gene Model: November 21st, 2012
18 days agopal2 phenylalanine ammonia lyase2:
2.04 - 2.04
GRMZM2G441347
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: February 21st, 2017
Gene Model: February 21st, 2017
18 days agonnr2 nitrate reductase2:
5.07
GRMZM5G878558
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: October 26th, 2010
Gene Model: May 10th, 2018
18 days agonnr1 nitrate reductase(NADH)1:
4.05
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: October 26th, 2010
18 days agoabi12 ABI3-VP1-transcription factor 12:
 
   Taikui Zhang et al. 2024. Phylogenomic profiles of whole-genome duplications in Poaceae and landscape of differential duplicate retention and losses among major Poaceae lineages Nat Commun. 15:3305.     Reference: April 17th, 2024
Gene Product: January 29th, 2022
Variation: September 20th, 2019
18 days agomdh6 malate dehydrogenase6:
1.07
GRMZM2G129513
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 23rd, 2014
Variation: August 31st, 2010
Gene Model: October 24th, 2013
18 days agome3 NADP malic enzyme3:
3.02
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: June 27th, 2019
Variation: September 1st, 2003
18 days agopep4 phosphoenolpyruvate carboxylase4:
7.02
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: December 27th, 2010
18 days agodvr1 divinyl reductase1:
 
GRMZM2G063048
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: October 8th, 2014
Gene Model: October 8th, 2014
18 days agogln2 glutamine synthetase2:
1.09
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: March 24th, 2021
18 days agopal3 phenylalanine ammonia lyase3:
4.05
GRMZM2G160541
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: September 25th, 2014
Gene Model: September 19th, 2014
18 days agopsan2 photosystem I N subunit2:
10.03
GRMZM2G009048
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Gene Model: January 10th, 2018
18 days agome2 NADP-dependent malic enzyme2:
6.05
GRMZM2G122479
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: June 27th, 2019
Variation: August 24th, 2014
Gene Model: August 21st, 2014
18 days agogln3 glutamine synthetase3:
9.06
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: December 7th, 2012
18 days agogln4 glutamine synthetase4:
5.06
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: September 1st, 2003
18 days agogln5 glutamine synthetase5:
4.06
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: May 30th, 2014
18 days agogln1 glutamine synthetase1:
10.07
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: September 1st, 2003
18 days agopep2 phosphoenolpyruvate carboxylase2:
5.04
GRMZM2G069542
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: October 1st, 2014
Gene Model: August 13th, 2014
18 days agoris2 iron-sulfur protein2:
4.09
GRMZM2G162748
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: November 5th, 2014
Variation: November 1st, 2014
Gene Model: October 31st, 2014
18 days agoris1 iron-sulfur protein1:
5.04
GRMZM2G162748
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: November 5th, 2014
Variation: October 31st, 2014
Gene Model: October 31st, 2014
18 days agonii2 nitrite reductase2:
4.07
GRMZM2G079381
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: September 1st, 2003
Gene Model: September 10th, 2014
18 days agofie1 fertilization independent endosperm1:
4.05
   Taikui Zhang et al. 2024. Phylogenomic profiles of whole-genome duplications in Poaceae and landscape of differential duplicate retention and losses among major Poaceae lineages Nat Commun. 15:3305.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: December 4th, 2012
18 days agofie2 fertilization independent endosperm2:
10.03
   Taikui Zhang et al. 2024. Phylogenomic profiles of whole-genome duplications in Poaceae and landscape of differential duplicate retention and losses among major Poaceae lineages Nat Commun. 15:3305.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: May 27th, 2014
18 days agoasn1 asparagine synthetase1:
1.03
GRMZM2G074589
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: February 1st, 2021
Variation: May 9th, 2009
Gene Model: December 30th, 2015
18 days agocmu1 chorismate mutase1:
8.08
GRMZM2G116087
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: February 12th, 2014
Gene Model: February 12th, 2014
18 days agogl26 glossy26:
8.02
GRMZM2G481843
Lin, M et al. 2024. Integrative multi-omic analysis identifies genes associated with cuticular wax biogenesis in adult maize leaves bioRxiv preprint. :doi: 10.1101/2024.04.09.588685.     Reference: April 17th, 2024
Gene Product: October 31st, 2018
Variation: October 31st, 2018
Gene Model: September 17th, 2018
18 days agoadc2 arginine decarboxylase2:
4.06
   Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: August 18th, 2020
Variation: January 22nd, 2021
18 days agocer8 eceriferum8:
10.03
GRMZM2G101875
Lin, M et al. 2024. Integrative multi-omic analysis identifies genes associated with cuticular wax biogenesis in adult maize leaves bioRxiv preprint. :doi: 10.1101/2024.04.09.588685.   AT2G47240 (TAIR) Reference: April 17th, 2024
Gene Product: October 31st, 2018
Variation: October 31st, 2018
Gene Model: January 23rd, 2018
18 days agoasn2 asparagine synthetase2:
3.09
GRMZM2G093175
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: February 1st, 2021
Variation: December 30th, 2015
Gene Model: December 30th, 2015
18 days agoasn3 asparagine synthetase3:
1.03
GRMZM2G053669
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: February 1st, 2021
Variation: May 9th, 2009
Gene Model: October 16th, 2015
18 days agoasn4 asparagine synthetase4:
9.06
GRMZM2G078472
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: February 1st, 2021
Variation: November 16th, 2022
Gene Model: December 30th, 2015
18 days agoalgt1 alanine--glyoxylate aminotransferase1:
1.04
GRMZM2G030571
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: July 25th, 2014
Gene Model: July 25th, 2014
18 days agogot5 glutamate-oxaloacetate transaminase5:
 
GRMZM2G033799
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: October 21st, 2021
Gene Model: August 4th, 2014
18 days agogot4 glutamate-oxaloacetate transaminase4:
 
GRMZM2G400604
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: October 21st, 2021
Variation: August 8th, 2014
Gene Model: August 5th, 2014
18 days agochph1 chlorophyllase1:
 
GRMZM2G170734
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: August 5th, 2016
Gene Model: October 4th, 2014
18 days agopdk3 phosphoinositide dependent protein kinase3:
 
GRMZM2G097821
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: April 18th, 2015
Gene Model: April 18th, 2015
18 days agocyb6 cytochrome b6:
 
GRMZM2G463640
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Gene Model: April 18th, 2015
18 days agopdk4 pyruvate, orthophosphate dikinase4:
 
AC217975.3_FG001
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: July 28th, 2014
Gene Model: April 18th, 2015
18 days agoadt6 arogenate dehydratase6:
 
GRMZM2G437912
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.   AT1G08250 (TAIR) Reference: April 17th, 2024
Gene Product: March 4th, 2024
Gene Model: March 24th, 2016
18 days agopal7 phenylalanine ammonia lyase7:
 
GRMZM2G170692
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: August 13th, 2022
Gene Model: May 6th, 2016
18 days agopal9 phenylalanine ammonia lyase9:
 
GRMZM2G029048
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: August 13th, 2022
Gene Model: May 6th, 2016
18 days agopal6 phenylalanine ammonia lyase6:
 
GRMZM2G118345
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: August 13th, 2022
Gene Model: May 6th, 2016
18 days agopal5 phenylalanine ammonia lyase5:
 
GRMZM2G081582
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: August 13th, 2022
Gene Model: May 6th, 2016
18 days agopal4 phenylalanine ammonia lyase4:
 
GRMZM2G063917
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: August 13th, 2022
Gene Model: May 6th, 2016
18 days agoacs3 1-aminocyclopropane-1-carboxylate synthase3:
 
GRMZM2G018006
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: May 16th, 2016
Gene Model: May 16th, 2016
18 days agochph2 chlorophyllase2:
 
GRMZM2G127421
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: August 5th, 2016
Variation: August 5th, 2016
Gene Model: August 5th, 2016
18 days agoarodh1 arogenate dehydrogenase1:
 
GRMZM2G084942
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: July 7th, 2018
Variation: July 7th, 2018
Gene Model: October 4th, 2017
18 days agopcr2 protochlorophyllide reductase2:
 
GRMZM2G036455
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: June 8th, 2019
Gene Model: October 4th, 2017
18 days agopcr3 protochlorophyllide reductase3:
 
GRMZM2G073351
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: June 8th, 2019
Variation: June 8th, 2019
Gene Model: October 4th, 2017
18 days agochlg1 chlorophyll synthase G1:
 
GRMZM2G162672
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: January 8th, 2018
Gene Model: January 8th, 2018
18 days agonnr5 nitrate reductase5:
 
GRMZM2G428027
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Gene Model: May 10th, 2018
18 days agonnr4 nitrate reductase4:
 
GRMZM2G076723
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: December 13th, 2021
Gene Model: May 10th, 2018
18 days agonii1 nitrate reductase1:
 
GRMZM2G102959
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Gene Model: May 10th, 2018
18 days agoarodh2 arogenate dehydrogenase2:
 
GRMZM2G085117
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: July 7th, 2018
Gene Model: July 7th, 2018
18 days agoarodh4 arogenate dehydrogenase4:
 
GRMZM2G324297
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: July 7th, 2018
Gene Model: July 7th, 2018
18 days agogl4b 3-ketoacyl-CoA synthase gl4b:
 
GRMZM2G478140
Lin, M et al. 2024. Integrative multi-omic analysis identifies genes associated with cuticular wax biogenesis in adult maize leaves bioRxiv preprint. :doi: 10.1101/2024.04.09.588685.     Reference: April 17th, 2024
Gene Product: November 1st, 2018
Gene Model: November 1st, 2018
18 days agocmu3 chorismate mutase3:
 
GRMZM2G028369
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: February 12th, 2014
Gene Model: January 21st, 2019
18 days agokcs22 3-ketoacyl-CoA synthase22:
 
GRMZM2G168956
Lin, M et al. 2024. Integrative multi-omic analysis identifies genes associated with cuticular wax biogenesis in adult maize leaves bioRxiv preprint. :doi: 10.1101/2024.04.09.588685.     Reference: April 17th, 2024
Gene Product: November 1st, 2018
Gene Model: February 13th, 2020
18 days agoptox2 plastid terminal oxidase2:
 
GRMZM2G010555
Nie, Y-X et al. 2024. The maize PLASTID TERMINAL OXIDASE (PTOX) locus controls the carotenoid content of kernels Plant J. 118(2) 457-468     Reference: April 17th, 2024
Gene Product: June 15th, 2023
Gene Model: April 27th, 2020
18 days agophao1 pheophorbide a oxygenase1:
 
GRMZM2G171390
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: August 26th, 2020
Gene Model: August 26th, 2020
18 days agochao1 chlorophyllide a oxygenase1:
 
GRMZM2G103197
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: February 12th, 2021
Gene Model: August 26th, 2020
18 days agocmu4 chorismate mutase4:
 
GRMZM2G124365
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: February 12th, 2014
Variation: January 22nd, 2021
Gene Model: January 21st, 2021
18 days agocold1 cold rsponsive1:
 
GRMZM2G129169
Taikui Zhang et al. 2024. Phylogenomic profiles of whole-genome duplications in Poaceae and landscape of differential duplicate retention and losses among major Poaceae lineages Nat Commun. 15:3305.     Reference: April 17th, 2024
Gene Product: April 15th, 2021
Variation: April 15th, 2021
Gene Model: April 15th, 2021
18 days agopet6 photosynthetic electron transport6:
 
GRMZM2G096792
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: May 11th, 2021
Gene Model: May 11th, 2021
18 days agopet9 photosynthetic electron transport9:
 
GRMZM2G016066
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: May 11th, 2021
Gene Model: May 11th, 2021
18 days agofnr3 ferredoxin NADP reductase3:
 
GRMZM2G168143
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: May 11th, 2021
Variation: July 15th, 2021
Gene Model: May 11th, 2021
18 days agofnr4 ferredoxin NADP reductase4:
 
GRMZM2G059083
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: May 11th, 2021
Gene Model: May 11th, 2021
18 days agod53 dwarf ortholog53:
 
GRMZM2G109674
Taikui Zhang et al. 2024. Phylogenomic profiles of whole-genome duplications in Poaceae and landscape of differential duplicate retention and losses among major Poaceae lineages Nat Commun. 15:3305.   LOC_Os11g01330 (MSU/TIGR)
OS11G0104300 (Gramene)
Reference: April 17th, 2024
Gene Product: June 8th, 2021
Variation: December 27th, 2022
Gene Model: June 8th, 2021
18 days agosae2 SUMO-activating enzyme2:
 
GRMZM2G129575
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: November 26th, 2019
Gene Model: August 17th, 2021
18 days agokrn2 kernel row number2:
 
GRMZM2G125656
Taikui Zhang et al. 2024. Phylogenomic profiles of whole-genome duplications in Poaceae and landscape of differential duplicate retention and losses among major Poaceae lineages Nat Commun. 15:3305.   Os04g0568400 (Gramene) Reference: April 17th, 2024
Gene Product: December 19th, 2020
Variation: March 24th, 2022
Gene Model: March 24th, 2022
18 days agompec2 magnesium-protoporphyrin ester cyclase2:
 
GRMZM2G043109
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.   AT3G56940 (TAIR) Reference: April 17th, 2024
Gene Product: July 7th, 2022
Gene Model: July 7th, 2022
18 days agocmu2 chorismate mutase2:
5.04
GRMZM2G179454
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: February 12th, 2014
Gene Model: February 12th, 2014
18 days agopep6 phosphoenolpyruvate carboxylase6:
8.08
GRMZM2G110714
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Gene Model: June 15th, 2022
18 days agochao2 chlorophyllide a oxygenase2:
8.06
GRMZM2G038487
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: February 12th, 2021
Variation: February 12th, 2021
Gene Model: September 2nd, 2019
18 days agoadt4 arogenate dehydratase4:
9.06
GRMZM2G145451
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: March 4th, 2024
Gene Model: June 26th, 2020
18 days agoIDP628  :
5.03
GRMZM2G156748
Lin, M et al. 2024. Integrative multi-omic analysis identifies genes associated with cuticular wax biogenesis in adult maize leaves bioRxiv preprint. :doi: 10.1101/2024.04.09.588685.     Reference: April 17th, 2024
Variation: March 31st, 2005
Gene Model: May 8th, 2020
18 days agoodc1 ornithine decarboxylase 1:
 
GRMZM2G140824
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: March 19th, 2008
Variation: March 19th, 2008
Gene Model: August 18th, 2020
18 days agoaldh2 aldehyde dehydrogenase2:
4.06
GRMZM2G125268
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: September 1st, 2003
Variation: May 13th, 2009
Gene Model: September 30th, 2015
18 days agoadt2 arogenate dehydratase2:
1.03
GRMZM2G141273
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: March 4th, 2024
Variation: March 4th, 2024
Gene Model: February 6th, 2020
18 days agonyc1 non-yellow coloring1:
3.01
GRMZM2G170013
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.   AT4g13250 (TAIR)
LOC_Os01g12710 (MSU/TIGR)
Os01g0227100 (Gramene)
Reference: April 17th, 2024
Gene Product: December 15th, 2016
Variation: December 15th, 2016
Gene Model: December 15th, 2016
18 days agopet8 photosynthetic electron transport8:
10.02
GRMZM2G016622
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: May 11th, 2021
Gene Model: June 13th, 2017
18 days agopcr1 protochlorophyllide reductase1:
2.01
GRMZM2G084958
Kretschmer , M et al. 2017. Chloroplast-associated metabolic functions influence the susceptibility of maize to Ustilago maydis. Mol Plant Pathol. 18:1210-1221.     Reference: April 17th, 2024
Gene Product: June 8th, 2019
Variation: February 25th, 2013
Gene Model: October 8th, 2014
19 days agogrp2 glycine-rich protein2:
10.03
GRMZM2G009448
Yingjie Zhang et al. 2024. Divergence in regulatory mechanisms of GR-RBP genes in different plants under abiotic stress Sci. Rep.. 14:8743.     Reference: April 16th, 2024
Gene Product: September 18th, 2020
Variation: June 5th, 2014
Gene Model: May 27th, 2015
19 days agogrp1 glycine-rich protein1:
1.08
   Yingjie Zhang et al. 2024. Divergence in regulatory mechanisms of GR-RBP genes in different plants under abiotic stress Sci. Rep.. 14:8743.     Reference: April 16th, 2024
Gene Product: September 18th, 2020
Variation: June 5th, 2014
19 days agorab15 responsive to abscisic acid15:
5.02
   Yingjie Zhang et al. 2024. Divergence in regulatory mechanisms of GR-RBP genes in different plants under abiotic stress Sci. Rep.. 14:8743.     Reference: April 16th, 2024
Gene Product: September 1st, 2003
Variation: September 1st, 2003
19 days agohma9 heavy metal ATPase9:
 
GRMZM2G151406
Fan, CJ et al. 2024. Cu-II-directed self-assembly of fullerenols to ameliorate copper stress in maize seedlings Sci Total Environ. :doi: 10.1016/j.scitotenv.2024.172416.     Reference: April 16th, 2024
Gene Product: October 23rd, 2019
Gene Model: October 23rd, 2019
19 days agohma10 heavy metal ATPase10:
 
GRMZM2G143512
Fan, CJ et al. 2024. Cu-II-directed self-assembly of fullerenols to ameliorate copper stress in maize seedlings Sci Total Environ. :doi: 10.1016/j.scitotenv.2024.172416.     Reference: April 16th, 2024
Gene Product: October 23rd, 2019
Gene Model: October 23rd, 2019
19 days agohma11 heavy metal ATPase11:
 
GRMZM2G010152
Fan, CJ et al. 2024. Cu-II-directed self-assembly of fullerenols to ameliorate copper stress in maize seedlings Sci Total Environ. :doi: 10.1016/j.scitotenv.2024.172416.     Reference: April 16th, 2024
Gene Product: October 23rd, 2019
Gene Model: October 23rd, 2019
19 days agoorrm4 organelle RRM protein4:
 
GRMZM2G131167
Yingjie Zhang et al. 2024. Divergence in regulatory mechanisms of GR-RBP genes in different plants under abiotic stress Sci. Rep.. 14:8743.     Reference: April 16th, 2024
Gene Product: April 11th, 2013
Gene Model: July 27th, 2020
19 days agohma12 heavy metal ATPase12:
 
AC205008.4_FG002
Fan, CJ et al. 2024. Cu-II-directed self-assembly of fullerenols to ameliorate copper stress in maize seedlings Sci Total Environ. :doi: 10.1016/j.scitotenv.2024.172416.     Reference: April 16th, 2024
Gene Product: October 23rd, 2019
Gene Model: March 11th, 2022
20 days agoZm00001d017536  :
 
   Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: April 15th, 2024
20 days agoZm00001d034455  :
 
   Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: August 21st, 2018
20 days agotst2 tonoplast sugar transporter2:
5.04
   Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: October 28th, 2021
Variation: September 25th, 2007
20 days agoakin2 AKINbetagamma-1 protein kinase2:
1.03
   Yang, T et al. 2024. Sucrose-associated SnRK1a1-mediated phosphorylation of Opaque2 modulates endosperm filling in maize. Molecular Plant.     Reference: April 15th, 2024
Gene Product: December 4th, 2020
Variation: September 25th, 2007
20 days agoIDP5037  :
3.09
   Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: September 1st, 2003
20 days agotom6 transporter of mugineic acid6:
3.09
GRMZM2G075594
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: September 23rd, 2016
Gene Model: May 18th, 2021
20 days agotom1 transporter of mugineic acid1:
1.07
GRMZM2G415785
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: September 23rd, 2016
Gene Model: April 16th, 2021
20 days agodu1 dull endosperm1:
10.03
GRMZM2G141399
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: October 14th, 2016
Variation: June 29th, 2015
Gene Model: February 28th, 2012
20 days agohex1 hexokinase1:
3.02 - 3.03
GRMZM2G104081
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: September 15th, 2013
Variation: February 15th, 2010
Gene Model: September 15th, 2013
20 days agomch2 maize CRY1 homolog2:
 
GRMZM2G069762
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Variation: October 14th, 2010
Gene Model: July 28th, 2016
20 days agomn2 miniature seed2:
7.02 - 7.06
GRMZM2G156794
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Variation: December 14th, 2023
Gene Model: June 29th, 2020
20 days agoo2 opaque endosperm2:
7.01
   Yang, T et al. 2024. Sucrose-associated SnRK1a1-mediated phosphorylation of Opaque2 modulates endosperm filling in maize. Molecular Plant.     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Variation: June 6th, 2016
20 days agowx1 waxy1:
9.03
   Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: June 4th, 2008
Variation: September 9th, 2023
20 days agoys3 yellow stripe3:
3.04
GRMZM2G063306
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.   LOC_Os11g04020 (MSU/TIGR)
Os11g0134900 (Gramene)
Reference: April 15th, 2024
Gene Product: September 23rd, 2016
Variation: March 9th, 2018
Gene Model: March 9th, 2018
20 days agoumc1214  :
7.04
GRMZM2G167932
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: September 11th, 2018
Gene Model: September 11th, 2018
20 days agorpl15a 60S ribosomal protein L15:
2.08
GRMZM2G034794
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Variation: June 3rd, 2013
Gene Model: August 18th, 2021
20 days agotom7 transporter of mugineic acid7:
2.05
GRMZM2G115658
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: September 23rd, 2016
Variation: September 1st, 2003
Gene Model: February 15th, 2018
20 days agomybr71 MYB-related-transcription factor 71:
10.07
GRMZM2G448104
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: March 5th, 2024
Gene Model: January 18th, 2018
20 days agorps3 ribosomal protein S3:
10.03
GRMZM2G099352
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Variation: October 9th, 2015
Gene Model: October 9th, 2015
20 days agorps22a ribosomal protein S22 homolog:
9.06
GRMZM2G067303
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Variation: July 3rd, 2013
Gene Model: July 28th, 2016
20 days agorps11 ribosomal protein S11:
10.06
GRMZM2G019325
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Variation: January 24th, 2015
Gene Model: August 7th, 2014
20 days agoohp1 opaque2 heterodimerizing protein1:
1.11
   Yang, T et al. 2024. Sucrose-associated SnRK1a1-mediated phosphorylation of Opaque2 modulates endosperm filling in maize. Molecular Plant.     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Variation: February 2nd, 2015
20 days agotst3 tonoplast sugar transporter3:
5.03
GRMZM2G040871
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: October 28th, 2021
Gene Model: June 26th, 2018
20 days agoereb160 AP2-EREBP-transcription factor 160:
9.01
GRMZM2G171179
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: September 1st, 2003
Gene Model: September 25th, 2015
20 days agoabi22 ABI3-VP1-transcription factor 22:
 
   Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: January 29th, 2022
Variation: August 19th, 2015
20 days agobzr4 BZR-transcription factor 4:
 
   Song, LL et al. 2021. 3 Biotech 11:441   AT2G45880 (TAIR) Reference: April 15th, 2024
Gene Product: May 4th, 2022
20 days agoe2f19 E2F-DP-transcription factor 219:
 
   Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: March 24th, 2021
20 days agohsftf16 HSF-transcription factor 16:
 
   Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: May 15th, 2020
20 days agothx16 Trihelix-transcription factor 16:
 
   Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: November 9th, 2021
20 days agobhlh90 bHLH-transcription factor 90:
 
   Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: July 7th, 2021
20 days agobzip100 bZIP-transcription factor 100:
 
   Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: August 21st, 2018
20 days agoarpp3 acidic ribosomal protein P3:
5.03
GRMZM2G077208
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Variation: April 23rd, 2012
Gene Model: August 28th, 2015
20 days agoglct1 glucose translocator1:
8.02
GRMZM2G153704
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: November 21st, 2023
Variation: May 30th, 2014
Gene Model: August 23rd, 2014
20 days agobnl3.04  :
10.00
GRMZM2G127393
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: September 1st, 2003
Gene Model: October 20th, 2018
20 days agoumc62  :
6.07
GRMZM2G022453
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: August 29th, 2018
Gene Model: August 29th, 2018
20 days agomek1 MEK homolog1:
3.07
GRMZM2G167856
Azrai, M et al. 2024. SSRN doi: 10.2139/ssrn.4789824     Reference: April 15th, 2024
Gene Product: July 10th, 2013
Variation: January 11th, 2013
Gene Model: July 12th, 2013
20 days agostp1 sugar transport1:
8.03
   Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: January 2nd, 2023
Variation: August 26th, 2015
20 days agomta1 mouse transplantation antigen homolog1:
1.10
   Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: January 13th, 2020
Variation: January 26th, 2011
20 days agonrt2 nitrate transport2:
4.11
GRMZM2G010280
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Variation: January 17th, 2023
Gene Model: May 9th, 2018
20 days agoo18 opaque18:
5.05 - 5.09
GRMZM2G105466
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: April 15th, 2022
Variation: April 15th, 2022
Gene Model: April 15th, 2022
20 days agomta2 mouse transplantation antigen homolog2:
 
GRMZM2G072315
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: January 13th, 2020
Gene Model: January 12th, 2020
20 days agorpl17a ribosomal protein L17a:
8.03
GRMZM2G119169
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Variation: June 7th, 2013
Gene Model: August 7th, 2014
20 days agorps24 ribosomal protein S24:
5.04
GRMZM2G091383
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Variation: June 11th, 2015
Gene Model: April 15th, 2015
20 days agorpl30 ribosomal protein L30:
8.01
GRMZM2G027728
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Variation: September 1st, 2003
Gene Model: July 28th, 2016
20 days agoarpp2a acidic ribosomal protein P2a:
8.03
   Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Variation: January 28th, 2009
20 days agothi1 thiamine biosynthesis1:
8.05
GRMZM2G018375
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: February 1st, 2013
Variation: January 15th, 2015
Gene Model: January 31st, 2013
20 days agoAY109968  :
7.02
GRMZM2G450488
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Variation: September 25th, 2007
Gene Model: September 6th, 2018
20 days agoamt5 ammonium transporter5:
10.04
GRMZM2G164743
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: July 8th, 2013
Gene Model: December 29th, 2017
20 days agochb101a chromatin remodeling complex subunit B (Swi3):
5.01
GRMZM5G878347
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: September 1st, 2003
Gene Model: June 30th, 2018
20 days agopco098394  :
1.01
   Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: September 25th, 2007
20 days agostp8 sugar transport protein8:
2.08
GRMZM2G159187
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: January 2nd, 2023
Gene Model: December 6th, 2021
20 days agopco128954a  :
2.06
GRMZM2G139900
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: September 25th, 2007
Gene Model: August 13th, 2021
20 days agoarftf12 ARF-transcription factor 12:
3.08
GRMZM2G437460
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: January 29th, 2022
Variation: February 14th, 2022
Gene Model: July 7th, 2017
20 days agorps25 ribosomal protein S25:
4.08
GRMZM2G084868
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: April 14th, 2015
Gene Model: April 15th, 2015
20 days agosut2 sucrose transporter2:
3.04
GRMZM2G307561
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: September 14th, 2013
Variation: February 20th, 2017
Gene Model: April 17th, 2013
20 days agopht2 phosphate transporter protein2:
1.08
GRMZM2G154090
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: June 16th, 2016
Variation: February 4th, 2011
Gene Model: May 27th, 2015
20 days agopht3 phosphate transporter protein3:
 
GRMZM2G045473
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: June 16th, 2016
Variation: December 28th, 2010
Gene Model: May 27th, 2015
20 days agopht4 phosphate transporter protein4:
10.04
GRMZM2G159075
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: June 16th, 2016
Variation: July 14th, 2008
Gene Model: May 27th, 2015
20 days agomstr1 monosaccharide transporter1:
7.00
GRMZM2G135739
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: January 2nd, 2023
Variation: July 14th, 2008
Gene Model: September 17th, 2015
20 days agomstr2 monosaccharide transporter2:
4.04
GRMZM2G141034
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: January 2nd, 2023
Variation: October 19th, 2010
Gene Model: September 17th, 2015
20 days agoarpp2a-3 acidic ribosomal protein P2a-3:
2.01
GRMZM2G010257
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: December 23rd, 2015
Gene Model: August 28th, 2015
20 days agoarpp1a acidic ribosomal protein P1a:
6.00
   Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Variation: January 28th, 2009
20 days agoarpp0 60S acidic ribosomal protein P0:
6.01
GRMZM2G066460
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: January 6th, 2016
Gene Model: August 28th, 2015
20 days agomfsd1 major facilitator superfamily defense1:
 
GRMZM2G161310
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: September 23rd, 2016
Variation: May 9th, 2009
Gene Model: December 29th, 2015
20 days agomfsd2 major facilitator superfamily defense2:
 
GRMZM5G877788
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: September 23rd, 2016
Variation: October 16th, 2010
Gene Model: December 30th, 2015
20 days agofrk1 fructokinase1:
3.05
GRMZM2G086845
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: May 1st, 2010
Gene Model: July 27th, 2016
20 days agomch3 maize CRY1 homolog3:
 
GRMZM2G100462
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: October 14th, 2010
Gene Model: August 23rd, 2018
20 days agopht7 phosphate transporter protein7:
 
GRMZM2G112377
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: June 16th, 2016
Variation: February 4th, 2011
Gene Model: May 27th, 2015
20 days agopht6 phosphate transporter protein6:
 
GRMZM5G881088
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: June 16th, 2016
Variation: June 17th, 2020
Gene Model: May 27th, 2015
20 days agorpl5b 60S ribosomal protein L5-1 homolog b:
 
GRMZM2G163081
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: December 1st, 2019
Variation: April 9th, 2011
Gene Model: July 28th, 2016
20 days agorpl17b ribosomal protein L17b:
 
GRMZM2G702426
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: June 7th, 2013
Gene Model: August 7th, 2014
20 days agotrpp1 trehalose-6-phosphate phosphatase1:
 
GRMZM2G347280
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: October 3rd, 2020
Gene Model: September 15th, 2013
20 days agotrpp9 trehalose-6-phosphate phosphatase9:
 
GRMZM5G840145
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: October 3rd, 2020
Gene Model: September 15th, 2013
20 days agosnrk1a2 SNF1-related kinase alpha1-like2:
 
GRMZM2G180704
Yang, T et al. 2024. Sucrose-associated SnRK1a1-mediated phosphorylation of Opaque2 modulates endosperm filling in maize. Molecular Plant.     Reference: April 15th, 2024
Gene Product: December 4th, 2020
Gene Model: February 13th, 2014
20 days agonrt1 nitrate transport1:
 
GRMZM2G010251
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Gene Model: September 10th, 2014
20 days agonrt3 nitrate transport3:
 
GRMZM2G163866
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Gene Model: September 10th, 2014
20 days agopco072913  :
4.08
GRMZM2G177720
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: September 25th, 2007
Gene Model: April 25th, 2020
20 days agorpl39 ribosomal protein L39:
 
GRMZM2G100467
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Variation: January 13th, 2015
Gene Model: January 13th, 2015
20 days agosut6 sucrose transporter6:
 
GRMZM2G106741
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: September 14th, 2013
Variation: April 13th, 2017
Gene Model: November 3rd, 2015
20 days agoss4 starch synthase4:
 
GRMZM2G044744
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: October 14th, 2016
Gene Model: December 5th, 2015
20 days agopht11 phosphate transporter protein11:
 
GRMZM2G139639
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: June 16th, 2016
Gene Model: June 16th, 2016
20 days agopht12 phosphate transporter protein12:
 
GRMZM2G041595
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: June 16th, 2016
Gene Model: September 12th, 2018
20 days agopht10 phosphate transporter protein10:
 
GRMZM2G075870
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: June 16th, 2016
Gene Model: June 16th, 2016
20 days agopht13 phosphate transporter protein13:
 
GRMZM2G170208
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: June 16th, 2016
Gene Model: June 16th, 2016
20 days agopht8 phosphate transporter protein8:
 
GRMZM2G009779
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: June 16th, 2016
Gene Model: June 16th, 2016
20 days agopht9 phosphate transporter protein9:
 
GRMZM2G070087
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: June 16th, 2016
Gene Model: June 16th, 2016
20 days agoftfh1 flavonoid 3',5'-hydroxylase1:
 
   Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: June 20th, 2018
20 days agospx1 SPX domain-containing membrane protein1:
 
GRMZM2G166976
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: October 9th, 2021
Gene Model: November 21st, 2018
20 days agonrt5 nitrate transport5:
 
GRMZM2G455124
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Gene Model: May 21st, 2019
20 days agotom2 transporter of mugineic acid2:
 
GRMZM2G336448
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: September 23rd, 2016
Gene Model: May 23rd, 2020
20 days agosus6 sucrose synthase6:
 
GRMZM2G045171
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: October 25th, 2006
Gene Model: July 13th, 2020
20 days agobbc1 breast basic conserved homolog1:
 
GRMZM2G145280
Song, LL et al. 2021. 3 Biotech 11:441   AT3G49010 (TAIR) Reference: April 15th, 2024
Gene Product: January 13th, 2020
Gene Model: July 18th, 2020
20 days agonope1 no perception1 :
 
GRMZM2G176737
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.   LOC_Os04g01520 (MSU/TIGR) Reference: April 15th, 2024
Gene Product: September 7th, 2020
Variation: November 21st, 2020
Gene Model: September 7th, 2020
20 days agorps6b ribosomal proteinS6b:
 
GRMZM5G851698
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Gene Model: September 17th, 2020
20 days agostp4 sugar transport protein4:
 
GRMZM5G801949
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: January 2nd, 2023
Gene Model: October 20th, 2020
20 days agotom4 transporter of mugineic acid4:
 
GRMZM2G029219
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: September 23rd, 2016
Gene Model: October 20th, 2020
20 days agostp3 sugar transport protein3:
 
GRMZM2G374812
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: January 2nd, 2023
Gene Model: January 8th, 2021
20 days agostp5 sugar transport protein5:
 
AC210616.4_FG003
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: January 2nd, 2023
Gene Model: July 8th, 2021
20 days agorpl15c 60S ribosomal protein L15:
 
GRMZM2G024354
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Gene Model: August 18th, 2021
20 days agorps21d 40S ribosomal protein S21d:
 
GRMZM2G125300
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Gene Model: August 18th, 2021
20 days agorpl14b 60S ribosomal protein L14:
 
GRMZM2G028883
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: August 18th, 2021
Gene Model: August 18th, 2021
20 days agospx8 SPX domain-containing membrane protein8:
 
GRMZM2G086430
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: October 9th, 2021
Gene Model: October 9th, 2021
20 days agospx9 SPX domain-containing membrane protein9:
 
GRMZM2G134062
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: October 9th, 2021
Gene Model: October 9th, 2021
20 days agonpf14 nitrate transporter/peptide transporter family14:
 
GRMZM5G827496
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Gene Model: January 2nd, 2022
20 days agostp12 sugar transport protein12:
 
GRMZM2G075229
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: January 2nd, 2023
Gene Model: January 12th, 2022
20 days agostp20 sugar transport protein20:
 
GRMZM2G046700
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: January 2nd, 2023
Gene Model: January 12th, 2022
20 days agostp13 sugar transport protein13:
 
GRMZM2G442546
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: January 2nd, 2023
Gene Model: January 12th, 2022
20 days agostp6 sugar transport protein6:
 
GRMZM5G843141
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: January 2nd, 2023
Gene Model: January 12th, 2022
20 days agostp7 sugar transport protein:
 
   Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: January 2nd, 2023
20 days agostp11 sugar transport protein11:
 
GRMZM2G022440
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: January 2nd, 2023
Gene Model: January 12th, 2022
20 days agostp14 sugar transport protein14:
 
GRMZM2G420004
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: January 2nd, 2023
Gene Model: January 12th, 2022
20 days agostp17 sugar transport protein17:
 
GRMZM2G117146
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: January 2nd, 2023
Gene Model: January 12th, 2022
20 days agostp18 sugar transport protein18:
 
GRMZM2G160614
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: January 2nd, 2023
Gene Model: January 12th, 2022
20 days agostp21 sugar transport protein21:
 
GRMZM2G404965
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: January 2nd, 2023
Gene Model: January 12th, 2022
20 days agostp23 sugar transport protein23:
 
GRMZM2G079342
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: January 2nd, 2023
Gene Model: January 12th, 2022
20 days agoena1 efflux transporter of Na1:
 
   Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: January 18th, 2022
20 days agorps27b ribosomal protein S27b:
5.04
GRMZM2G377600
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: March 14th, 2015
Gene Model: March 14th, 2015
20 days agorps12a ribosomal proteinS12 (homolog):
6.07
GRMZM2G132929
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Gene Model: December 26th, 2019
20 days agopco093173  :
6.06
GRMZM2G044137
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: September 25th, 2007
Gene Model: November 22nd, 2019
20 days agosnrkII2 SnRK2 serine threonine protein kinase2:
7.04
GRMZM2G056732
Yang, T et al. 2024. Sucrose-associated SnRK1a1-mediated phosphorylation of Opaque2 modulates endosperm filling in maize. Molecular Plant.     Reference: April 15th, 2024
Gene Product: April 14th, 2018
Gene Model: February 11th, 2015
20 days agoIDP243  :
1.07
GRMZM2G152552
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: March 31st, 2005
Gene Model: February 14th, 2019
20 days agomagi7806  :
1.10
GRMZM2G165619
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: April 8th, 2021
Gene Model: February 16th, 2019
20 days agoIDP3943  :
1.04
GRMZM2G168674
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: March 31st, 2005
Gene Model: March 24th, 2021
20 days agoIDP4043  :
1.01
GRMZM2G092719
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: March 31st, 2005
Gene Model: April 10th, 2021
20 days agoIDP2449  :
2.04
GRMZM2G065073
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: March 31st, 2005
Gene Model: February 19th, 2019
20 days agorpl12 ribosomal protein L12:
2.04
AC196489.3_FG002
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Variation: March 31st, 2005
Gene Model: February 19th, 2019
20 days agoIDP469  :
2.08
GRMZM2G010991
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: March 31st, 2005
Gene Model: February 20th, 2019
20 days agoIDP661  :
2.09
GRMZM2G111172
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: March 31st, 2005
Gene Model: February 20th, 2019
20 days agoIDP4031  :
3.05
GRMZM2G171484
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: March 31st, 2005
Gene Model: May 15th, 2021
20 days agomagi92568  :
6.05
GRMZM5G850966
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: March 31st, 2005
Gene Model: February 19th, 2021
20 days agoIDP764  :
6.05
GRMZM2G078985
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: March 31st, 2005
Gene Model: July 2nd, 2021
20 days agomagi99589  :
7.03
GRMZM5G870752
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: March 31st, 2005
Gene Model: February 4th, 2019
20 days agoIDP2462  :
9.06
GRMZM2G138589
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Variation: March 31st, 2005
Gene Model: January 22nd, 2019
20 days agomagi104697  :
9.03
GRMZM2G074085
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: March 31st, 2005
Gene Model: January 25th, 2019
20 days agoIDP245  :
10.04
GRMZM2G043737
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: March 31st, 2005
Gene Model: January 2nd, 2018
20 days agoIDP3950  :
10.04
GRMZM2G124411
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: March 31st, 2005
Gene Model: July 20th, 2021
20 days agorps10 ribosomal protein S10:
 
GRMZM2G095511
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: February 13th, 2008
Variation: February 13th, 2008
Gene Model: April 15th, 2015
20 days agocsu36c(rpL19)  :
3.09
GRMZM2G116135
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Variation: March 17th, 2021
Gene Model: February 25th, 2019
20 days agostp19 sugar transport protein19:
7.02
GRMZM2G029153
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: January 2nd, 2023
Gene Model: July 24th, 2020
20 days agorpl44 ribosomal protein L44:
7.03
GRMZM2G009412
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Variation: January 24th, 2009
Gene Model: June 1st, 2017
20 days agoarpp40 acidic ribosomal protein P40:
9.07
GRMZM2G126821
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Variation: August 27th, 2015
Gene Model: August 28th, 2015
20 days agorps4 ribosomal protein S4:
5.00
GRMZM2G125271
Song, LL et al. 2021. 3 Biotech 11:441     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Variation: May 21st, 2009
Gene Model: August 7th, 2014
20 days agoost1 oligosaccharide transferase1:
7.02
GRMZM2G462325
Xiaowan Hou et al. 2024. Two maize homologs of mammalian proton-coupled folate transporter, ZmMFS_1-62 and ZmMFS_1-73, are essential to salt and drought tolerance Plant Physiol Biochem. :doi: 10.1016/j.plaphy.2024.108623.     Reference: April 15th, 2024
Gene Product: September 1st, 2003
Variation: September 1st, 2003
Gene Model: December 28th, 2016
23 days agomrpa23 multidrug resistance associated protein23:
 
   Li, PC et al. 2024. Genomic basis determining root system architecture in maize. Theor Appl Genet. 137:102.     Reference: April 12th, 2024
Gene Product: July 11th, 2019
23 days agoereb229 AP2-EREBP-transcription factor 229:
 
   Xiang, Y et al. 2024. Autophagy receptor ZmNBR1 promotes the autophagic degradation of ZmBRI1a and enhances drought tolerance in maize. J Integr Plant Biol. :doi: 10.1111/jipb.13662.     Reference: April 12th, 2024
Gene Product: July 5th, 2019
23 days agoprp19 pathogenesis-related protein19:
 
   Ronglan Li et al. 2024. Meta-Quantitative Trait Loci Analysis and Candidate Gene Mining for Drought Tolerance-Associated Traits in Maize (Zea mays L.) Int J Mol Sci. 25:4295.     Reference: April 12th, 2024
Gene Product: December 12th, 2022
23 days agoprp13 pathogenesis-related protein13:
 
   Ronglan Li et al. 2024. Meta-Quantitative Trait Loci Analysis and Candidate Gene Mining for Drought Tolerance-Associated Traits in Maize (Zea mays L.) Int J Mol Sci. 25:4295.     Reference: April 12th, 2024
Gene Product: December 12th, 2022
23 days agopebp3 phosphatidylethanolamine-binding protein3:
 
   Ronglan Li et al. 2024. Meta-Quantitative Trait Loci Analysis and Candidate Gene Mining for Drought Tolerance-Associated Traits in Maize (Zea mays L.) Int J Mol Sci. 25:4295.     Reference: April 12th, 2024
Gene Product: March 19th, 2024
Variation: December 15th, 2010
23 days agopebp6 phosphatidylethanolamine-binding protein6:
 
   Ronglan Li et al. 2024. Meta-Quantitative Trait Loci Analysis and Candidate Gene Mining for Drought Tolerance-Associated Traits in Maize (Zea mays L.) Int J Mol Sci. 25:4295.     Reference: April 12th, 2024
Gene Product: March 19th, 2024
Variation: December 15th, 2010
23 days agobz1 bronze1:
9.02
   Deng, M et al. 2024. Combining association with linkage mapping to dissect the phenolamides metabolism of the maize kernel Frontiers in Plant Science. 15:1376405.     Reference: April 12th, 2024
Gene Product: July 4th, 2018
Variation: December 17th, 2022
23 days agog2 golden plant2:
3.00 - 3.01
GRMZM2G087804
Li, PC et al. 2024. Genomic basis determining root system architecture in maize. Theor Appl Genet. 137:102.     Reference: April 12th, 2024
Gene Product: July 11th, 2019
Variation: October 24th, 2017
Gene Model: August 30th, 2013
23 days agona1 nana plant1:
3.06 - 3.08
GRMZM2G449033
Xiang, Y et al. 2024. Autophagy receptor ZmNBR1 promotes the autophagic degradation of ZmBRI1a and enhances drought tolerance in maize. J Integr Plant Biol. :doi: 10.1111/jipb.13662.     Reference: April 12th, 2024
Gene Product: July 24th, 2012
Variation: December 22nd, 2016
Gene Model: December 20th, 2011
23 days agors2 rough sheath2:
1.05
   Li, PC et al. 2024. Genomic basis determining root system architecture in maize. Theor Appl Genet. 137:102.     Reference: April 12th, 2024
Gene Product: September 1st, 2003
Variation: May 9th, 2009
23 days agoarftf25 ARF-transcription factor 25:
8.06
GRMZM2G116557
Li, PC et al. 2024. Genomic basis determining root system architecture in maize. Theor Appl Genet. 137:102.     Reference: April 12th, 2024
Gene Product: January 29th, 2022
Variation: August 22nd, 2017
Gene Model: August 22nd, 2017
23 days agoiaa38 Aux/IAA-transcription factor 38:
8.04
GRMZM2G035465
Li, PC et al. 2024. Genomic basis determining root system architecture in maize. Theor Appl Genet. 137:102.     Reference: April 12th, 2024
Variation: March 12th, 2022
Gene Model: September 19th, 2018
23 days agoarr2 ARR-B-transcription factor 2:
 
   Li, PC et al. 2024. Genomic basis determining root system architecture in maize. Theor Appl Genet. 137:102.     Reference: April 12th, 2024
Gene Product: June 30th, 2017
23 days agopip1b plasma membrane intrinsic protein1:
5.06
   Xiang, Y et al. 2024. Autophagy receptor ZmNBR1 promotes the autophagic degradation of ZmBRI1a and enhances drought tolerance in maize. J Integr Plant Biol. :doi: 10.1111/jipb.13662.     Reference: April 12th, 2024
Gene Product: January 27th, 2022
Variation: April 26th, 2016
23 days agopip2a plasma membrane intrinsic protein2:
2.03
   Xiang, Y et al. 2024. Autophagy receptor ZmNBR1 promotes the autophagic degradation of ZmBRI1a and enhances drought tolerance in maize. J Integr Plant Biol. :doi: 10.1111/jipb.13662.     Reference: April 12th, 2024
Gene Product: September 1st, 2003
Variation: January 25th, 2020
23 days agocal1 calmodulin1:
5.06
   Ronglan Li et al. 2024. Meta-Quantitative Trait Loci Analysis and Candidate Gene Mining for Drought Tolerance-Associated Traits in Maize (Zea mays L.) Int J Mol Sci. 25:4295.     Reference: April 12th, 2024
Gene Product: September 1st, 2003
Variation: September 1st, 2003
23 days agolox1 lipoxygenase1:
3.06
   Ronglan Li et al. 2024. Meta-Quantitative Trait Loci Analysis and Candidate Gene Mining for Drought Tolerance-Associated Traits in Maize (Zea mays L.) Int J Mol Sci. 25:4295.     Reference: April 12th, 2024
Gene Product: November 13th, 2014
Variation: July 24th, 2008
23 days agoobf4 octopine synthase binding factor4:
3.06
GRMZM2G125243
Ronglan Li et al. 2024. Meta-Quantitative Trait Loci Analysis and Candidate Gene Mining for Drought Tolerance-Associated Traits in Maize (Zea mays L.) Int J Mol Sci. 25:4295.     Reference: April 12th, 2024
Gene Product: September 1st, 2003
Variation: October 29th, 2010
Gene Model: April 11th, 2013
23 days agocdc3 cell division control protein homolog3:
3.10
GRMZM2G495626
Li, PC et al. 2024. Genomic basis determining root system architecture in maize. Theor Appl Genet. 137:102.     Reference: April 12th, 2024
Gene Product: October 19th, 2022
Gene Model: December 21st, 2018
23 days agoeil1 ethylene insensitive-like1:
9.05
GRMZM2G317584
Ronglan Li et al. 2024. Meta-Quantitative Trait Loci Analysis and Candidate Gene Mining for Drought Tolerance-Associated Traits in Maize (Zea mays L.) Int J Mol Sci. 25:4295.     Reference: April 12th, 2024
Variation: August 6th, 2008
Gene Model: August 29th, 2013
23 days agoeil3 ethylene insensitive-like3:
1.04
GRMZM2G033570
Ronglan Li et al. 2024. Meta-Quantitative Trait Loci Analysis and Candidate Gene Mining for Drought Tolerance-Associated Traits in Maize (Zea mays L.) Int J Mol Sci. 25:4295.     Reference: April 12th, 2024
Variation: August 6th, 2008
Gene Model: August 29th, 2013
23 days agopin3 PIN-formed protein3:
4.08
GRMZM2G149184
Li, PC et al. 2024. Genomic basis determining root system architecture in maize. Theor Appl Genet. 137:102.     Reference: April 12th, 2024
Gene Product: April 3rd, 2024
Gene Model: June 7th, 2012
23 days agobri1a brassinosteroid insensitive1a:
 
GRMZM2G048294
Xiang, Y et al. 2024. Autophagy receptor ZmNBR1 promotes the autophagic degradation of ZmBRI1a and enhances drought tolerance in maize. J Integr Plant Biol. :doi: 10.1111/jipb.13662.   AT4G39400 (TAIR)
LOC_Os01g52050 (MSU/TIGR)
Reference: April 12th, 2024
Gene Product: June 23rd, 2021
Variation: July 17th, 2015
Gene Model: July 16th, 2015
23 days agoprh15 protein phosphatase homolog15:
 
GRMZM2G383807
Ronglan Li et al. 2024. Meta-Quantitative Trait Loci Analysis and Candidate Gene Mining for Drought Tolerance-Associated Traits in Maize (Zea mays L.) Int J Mol Sci. 25:4295.     Reference: April 12th, 2024
Gene Product: October 25th, 2021
Gene Model: October 18th, 2016
23 days agopyl3 pyrabactin resistance-like protein3:
 
GRMZM2G154987
Ronglan Li et al. 2024. Meta-Quantitative Trait Loci Analysis and Candidate Gene Mining for Drought Tolerance-Associated Traits in Maize (Zea mays L.) Int J Mol Sci. 25:4295.     Reference: April 12th, 2024
Gene Product: January 31st, 2021
Gene Model: April 21st, 2018
23 days agoopst2 open stomate2:
 
GRMZM2G171435
Ronglan Li et al. 2024. Meta-Quantitative Trait Loci Analysis and Candidate Gene Mining for Drought Tolerance-Associated Traits in Maize (Zea mays L.) Int J Mol Sci. 25:4295.   AT4G33950 (TAIR) Reference: April 12th, 2024
Gene Product: April 14th, 2018
Gene Model: June 11th, 2019
23 days agoaas3 auxin amido synthetase3:
 
GRMZM2G410567
Ronglan Li et al. 2024. Meta-Quantitative Trait Loci Analysis and Candidate Gene Mining for Drought Tolerance-Associated Traits in Maize (Zea mays L.) Int J Mol Sci. 25:4295.   AT1G28130 (TAIR) Reference: April 12th, 2024
Gene Product: October 21st, 2019
Gene Model: October 21st, 2019
23 days agoaas12 auxin amido synthetase12:
 
GRMZM2G366873
Ronglan Li et al. 2024. Meta-Quantitative Trait Loci Analysis and Candidate Gene Mining for Drought Tolerance-Associated Traits in Maize (Zea mays L.) Int J Mol Sci. 25:4295.     Reference: April 12th, 2024
Gene Product: October 21st, 2019
Gene Model: October 21st, 2019
23 days agouce16 ubiquitin-conjugating enzyme16:
 
GRMZM2G312693
Ronglan Li et al. 2024. Meta-Quantitative Trait Loci Analysis and Candidate Gene Mining for Drought Tolerance-Associated Traits in Maize (Zea mays L.) Int J Mol Sci. 25:4295.     Reference: April 12th, 2024
Gene Product: December 19th, 2019
Gene Model: December 19th, 2019
23 days agoarr8 ARR-B-transcription factor 8:
5.08
GRMZM2G479110
Li, PC et al. 2024. Genomic basis determining root system architecture in maize. Theor Appl Genet. 137:102.     Reference: April 12th, 2024
Gene Product: June 30th, 2017
Variation: June 30th, 2017
Gene Model: June 30th, 2017
23 days agodrg10 dark response gene10:
 
GRMZM2G107199
Xiang, Y et al. 2024. Autophagy receptor ZmNBR1 promotes the autophagic degradation of ZmBRI1a and enhances drought tolerance in maize. J Integr Plant Biol. :doi: 10.1111/jipb.13662.     Reference: April 12th, 2024
Variation: January 25th, 2021
Gene Model: June 6th, 2020
23 days agoprp8 pathogenesis-related protein8:
 
GRMZM2G456997
Ronglan Li et al. 2024. Meta-Quantitative Trait Loci Analysis and Candidate Gene Mining for Drought Tolerance-Associated Traits in Maize (Zea mays L.) Int J Mol Sci. 25:4295.     Reference: April 12th, 2024
Gene Product: December 12th, 2022
Gene Model: June 16th, 2020
23 days agocyc23 cyclin23:
 
GRMZM2G061287
Li, PC et al. 2024. Genomic basis determining root system architecture in maize. Theor Appl Genet. 137:102.     Reference: April 12th, 2024
Gene Product: June 26th, 2009
Gene Model: January 11th, 2021
23 days agobsk1 brassinosteroid-signaling kinase1:
 
GRMZM2G127050
Xiang, Y et al. 2024. Autophagy receptor ZmNBR1 promotes the autophagic degradation of ZmBRI1a and enhances drought tolerance in maize. J Integr Plant Biol. :doi: 10.1111/jipb.13662.     Reference: April 12th, 2024
Gene Product: May 13th, 2014
Gene Model: April 19th, 2021
23 days agoact10 actin10:
 
GRMZM2G030169
Xiang, Y et al. 2024. Autophagy receptor ZmNBR1 promotes the autophagic degradation of ZmBRI1a and enhances drought tolerance in maize. J Integr Plant Biol. :doi: 10.1111/jipb.13662.     Reference: April 12th, 2024
Gene Product: September 1st, 2003
Gene Model: April 20th, 2021
23 days agogsk2 glycogen synthase kinase2:
 
GRMZM2G472625
Xiang, Y et al. 2024. Autophagy receptor ZmNBR1 promotes the autophagic degradation of ZmBRI1a and enhances drought tolerance in maize. J Integr Plant Biol. :doi: 10.1111/jipb.13662.     Reference: April 12th, 2024
Gene Product: February 22nd, 2022
Gene Model: June 24th, 2021
23 days agosaur45 small auxin up RNA45:
 
GRMZM2G471304
Ronglan Li et al. 2024. Meta-Quantitative Trait Loci Analysis and Candidate Gene Mining for Drought Tolerance-Associated Traits in Maize (Zea mays L.) Int J Mol Sci. 25:4295.     Reference: April 12th, 2024
Gene Product: November 26th, 2021
Gene Model: November 26th, 2021
23 days agoprp15 pathogenesis-related protein15:
 
GRMZM2G053493
Ronglan Li et al. 2024. Meta-Quantitative Trait Loci Analysis and Candidate Gene Mining for Drought Tolerance-Associated Traits in Maize (Zea mays L.) Int J Mol Sci. 25:4295.     Reference: April 12th, 2024
Gene Product: December 12th, 2022
Gene Model: August 9th, 2022
23 days agoago1 argonaute1:
8.05
GRMZM2G162525
Li, PC et al. 2024. Genomic basis determining root system architecture in maize. Theor Appl Genet. 137:102.     Reference: April 12th, 2024
Gene Product: August 12th, 2016
Variation: November 5th, 2010
Gene Model: January 30th, 2015
23 days agoasc1 asceapen1:
7.02
GRMZM2G140633
Li, PC et al. 2024. Genomic basis determining root system architecture in maize. Theor Appl Genet. 137:102.     Reference: April 12th, 2024
Gene Product: June 26th, 2009
Variation: June 29th, 2009
Gene Model: December 8th, 2014
23 days agocko3 cytokinin oxidase 3:
8.06
GRMZM2G167220
Li, PC et al. 2024. Genomic basis determining root system architecture in maize. Theor Appl Genet. 137:102.     Reference: April 12th, 2024
Gene Product: March 19th, 2014
Variation: February 27th, 2008
Gene Model: March 21st, 2014
23 days agoumi11 Ustilago maydis induced11:
7.00
GRMZM2G450866
Ronglan Li et al. 2024. Meta-Quantitative Trait Loci Analysis and Candidate Gene Mining for Drought Tolerance-Associated Traits in Maize (Zea mays L.) Int J Mol Sci. 25:4295.     Reference: April 12th, 2024
Gene Product: January 12th, 2015
Variation: January 11th, 2015
Gene Model: January 11th, 2015
24 days agolg1 liguleless1:
2.01
   Bertolini, E et al. 2023. Regulatory variation controlling architectural pleiotropy in maize bioRxiv preprint. :doi: 10.1101/2023.08.19.553731.     Reference: April 11th, 2024
Gene Product: December 18th, 2014
Variation: August 17th, 2020
24 days agolg2 liguleless2:
3.06
   Bertolini, E et al. 2023. Regulatory variation controlling architectural pleiotropy in maize bioRxiv preprint. :doi: 10.1101/2023.08.19.553731.     Reference: April 11th, 2024
Gene Product: August 22nd, 2014
Variation: January 22nd, 2024
24 days agolg4 liguleless4:
8.05
GRMZM2G094241
Bertolini, E et al. 2023. Regulatory variation controlling architectural pleiotropy in maize bioRxiv preprint. :doi: 10.1101/2023.08.19.553731.     Reference: April 11th, 2024
Gene Product: August 22nd, 2014
Variation: May 18th, 2012
Gene Model: May 24th, 2012
24 days agors1 rough sheath1:
7.00
GRMZM2G028041
Bertolini, E et al. 2023. Regulatory variation controlling architectural pleiotropy in maize bioRxiv preprint. :doi: 10.1101/2023.08.19.553731.     Reference: April 11th, 2024
Gene Product: September 30th, 2015
Variation: November 18th, 2013
Gene Model: September 30th, 2015
24 days agotb1 teosinte branched1:
1.09
   Mascher, M et al. 2024. Are cereal grasses a single genetic system? Nature Plants. :doi: 10.1038/s41477-024-01674-3.     Reference: April 11th, 2024
Gene Product: September 14th, 2016
Variation: December 28th, 2023
24 days agozhd21 ZF-HD-transcription factor 21:
3.05
GRMZM5G821755
Bertolini, E et al. 2023. Regulatory variation controlling architectural pleiotropy in maize bioRxiv preprint. :doi: 10.1101/2023.08.19.553731.     Reference: April 11th, 2024
Gene Product: August 24th, 2022
Variation: April 11th, 2024
Gene Model: March 21st, 2018
24 days agowab1 Wavy auricles in blades1:
2.06 - 2.07
GRMZM2G110242
Bertolini, E et al. 2023. Regulatory variation controlling architectural pleiotropy in maize bioRxiv preprint. :doi: 10.1101/2023.08.19.553731.   LOC_Os09g24480 (MSU/TIGR)
Os09g0410500 (Gramene)
Reference: April 11th, 2024
Gene Product: September 14th, 2016
Variation: November 2nd, 2014
Gene Model: November 2nd, 2014
24 days agoabi41 ABI3-VP1-transcription factor 41:
 
   Bertolini, E et al. 2023. Regulatory variation controlling architectural pleiotropy in maize bioRxiv preprint. :doi: 10.1101/2023.08.19.553731.     Reference: April 11th, 2024
Gene Product: January 29th, 2022
Variation: July 19th, 2021
24 days agoereb53 AP2-EREBP-transcription factor 53:
 
   McFarland, FL et al. 2024. History and current status of embryogenic culture-based tissue culture, transformation and gene editing of maize (Zea mays L.). Plant Genome. :e20451.   LOC_Os1g67410 (MSU/TIGR) Reference: April 11th, 2024
Gene Product: July 5th, 2019
24 days agoereb92 AP2-EREBP-transcription factor 92:
 
   Bertolini, E et al. 2023. Regulatory variation controlling architectural pleiotropy in maize bioRxiv preprint. :doi: 10.1101/2023.08.19.553731.     Reference: April 11th, 2024
Variation: November 17th, 2023
24 days agodof25 C2C2-Dof-transcription factor 25:
 
   Bertolini, E et al. 2023. Regulatory variation controlling architectural pleiotropy in maize bioRxiv preprint. :doi: 10.1101/2023.08.19.553731.     Reference: April 11th, 2024
Gene Product: July 4th, 2022
24 days agowox2a WUSCHEL-related homeobox 2a`:
 
   McFarland, FL et al. 2024. History and current status of embryogenic culture-based tissue culture, transformation and gene editing of maize (Zea mays L.). Plant Genome. :e20451.     Reference: April 11th, 2024
Gene Product: August 25th, 2017
24 days agozhd1 ZF-HD-transcription factor 1:
 
   Bertolini, E et al. 2023. Regulatory variation controlling architectural pleiotropy in maize bioRxiv preprint. :doi: 10.1101/2023.08.19.553731.     Reference: April 11th, 2024
Gene Product: August 24th, 2022
Variation: April 11th, 2024
24 days agozhd15 ZF-HD-transcription factor 15:
 
   Bertolini, E et al. 2023. Regulatory variation controlling architectural pleiotropy in maize bioRxiv preprint. :doi: 10.1101/2023.08.19.553731.     Reference: April 11th, 2024
Gene Product: August 24th, 2022
24 days agolpa2 low phytic acid2:
1.05
GRMZM2G456626
Indhu, SM et al. 2024. Genetic diversity and decoding the genetics of phytic acid by investigating the inheritance of lpa 2 allele in maize (Zea mays L.) Electron J Plant Breed. 15:110-119.     Reference: April 11th, 2024
Gene Product: April 22nd, 2013
Variation: April 22nd, 2013
Gene Model: April 23rd, 2013
24 days agogn1 gnarley1:
2.10
   Bertolini, E et al. 2023. Regulatory variation controlling architectural pleiotropy in maize bioRxiv preprint. :doi: 10.1101/2023.08.19.553731.     Reference: April 11th, 2024
Gene Product: September 1st, 2003
Variation: May 30th, 2014
24 days agoyab10 yabby homolog10:
1.07
   Mascher, M et al. 2024. Are cereal grasses a single genetic system? Nature Plants. :doi: 10.1038/s41477-024-01674-3.     Reference: April 11th, 2024
Gene Product: October 16th, 2015
Variation: March 23rd, 2009
24 days agoyab12 C2C2-YABBY-transcription factor 12:
 
GRMZM2G167824
Mascher, M et al. 2024. Are cereal grasses a single genetic system? Nature Plants. :doi: 10.1038/s41477-024-01674-3.     Reference: April 11th, 2024
Gene Product: October 16th, 2015
Gene Model: July 3rd, 2012
24 days agoyab6 C2C2-YABBY-transcription factor 6:
 
GRMZM2G074124
Mascher, M et al. 2024. Are cereal grasses a single genetic system? Nature Plants. :doi: 10.1038/s41477-024-01674-3.     Reference: April 11th, 2024
Gene Product: October 16th, 2015
Variation: May 6th, 2020
Gene Model: July 3rd, 2012
24 days agobri1b brassinosteroid insensitive1b:
 
GRMZM2G449830
Bertolini, E et al. 2023. Regulatory variation controlling architectural pleiotropy in maize bioRxiv preprint. :doi: 10.1101/2023.08.19.553731.     Reference: April 11th, 2024
Gene Product: June 23rd, 2021
Variation: July 17th, 2015
Gene Model: July 16th, 2015
24 days agoyab13 C2C2-YABBY-transcription factor 13:
 
   Mascher, M et al. 2024. Are cereal grasses a single genetic system? Nature Plants. :doi: 10.1038/s41477-024-01674-3.     Reference: April 11th, 2024
Gene Product: October 16th, 2015
24 days agogsk1 glycogen synthase kinase1:
 
GRMZM2G045330
Bertolini, E et al. 2023. Regulatory variation controlling architectural pleiotropy in maize bioRxiv preprint. :doi: 10.1101/2023.08.19.553731.     Reference: April 11th, 2024
Gene Product: February 22nd, 2022
Gene Model: February 22nd, 2022
24 days agofun1 feminised upright narrow1:
 
GRMZM2G022651
Bertolini, E et al. 2023. Regulatory variation controlling architectural pleiotropy in maize bioRxiv preprint. :doi: 10.1101/2023.08.19.553731.   AT3G58770 (TAIR) Reference: April 11th, 2024
Variation: March 12th, 2022
Gene Model: March 12th, 2022
25 days agopor2 porin2:
10.06
GRMZM2G125023
Deyin Wang et al. 2024. Aquaporin ZmTIP2;3 Promotes Drought Resistance of Maize through Symbiosis with Arbuscular Mycorrhizal Fungi Int J Mol Sci. 25:4205.     Reference: April 10th, 2024
Gene Product: January 27th, 2022
Variation: April 10th, 2024
Gene Model: February 5th, 2015
26 days agohggt1 homogentisate geranylgeranyl transferase1:
 
GRMZM2G173358
My Abdelmajid Kassem et al. 2024. A Summary of Two Decades of QTL and Candidate Genes That Control Seed Tocopherol Contents in Maize (Zea mays L.) Genes. 15:472.     Reference: April 9th, 2024
Gene Product: January 8th, 2018
Gene Model: June 26th, 2013
26 days agopyk2 pyruvate kinase2:
10.01
GRMZM2G004534
My Abdelmajid Kassem et al. 2024. A Summary of Two Decades of QTL and Candidate Genes That Control Seed Tocopherol Contents in Maize (Zea mays L.) Genes. 15:472.     Reference: April 9th, 2024
Gene Product: April 8th, 2011
Variation: April 6th, 2007
Gene Model: July 28th, 2016
26 days agosxd1 sucrose export defective1:
5.04
   My Abdelmajid Kassem et al. 2024. A Summary of Two Decades of QTL and Candidate Genes That Control Seed Tocopherol Contents in Maize (Zea mays L.) Genes. 15:472.     Reference: April 9th, 2024
Gene Product: December 1st, 2012
Variation: August 7th, 2012
26 days agovte5 vitamin E synthesis5:
2.01
   My Abdelmajid Kassem et al. 2024. A Summary of Two Decades of QTL and Candidate Genes That Control Seed Tocopherol Contents in Maize (Zea mays L.) Genes. 15:472.     Reference: April 9th, 2024
Gene Product: June 6th, 2022
26 days agoggh1 geranylgeranyl hydrogenase1:
 
GRMZM2G105644
My Abdelmajid Kassem et al. 2024. A Summary of Two Decades of QTL and Candidate Genes That Control Seed Tocopherol Contents in Maize (Zea mays L.) Genes. 15:472.     Reference: April 9th, 2024
Gene Product: October 4th, 2014
Gene Model: October 4th, 2014
26 days agoggh2 geranylgeranyl hydrogenase2:
 
GRMZM2G419111
My Abdelmajid Kassem et al. 2024. A Summary of Two Decades of QTL and Candidate Genes That Control Seed Tocopherol Contents in Maize (Zea mays L.) Genes. 15:472.     Reference: April 9th, 2024
Gene Product: October 4th, 2014
Gene Model: October 4th, 2014
26 days agovim102 variant in methylation102:
 
GRMZM2G339151
Haoxiang Yang et al. 2024. QTL mapping for plant height and ear height using bi-parental immortalized heterozygous populations in maize. Frontiers in Plant Science. 15:1371394.     Reference: April 9th, 2024
Variation: December 22nd, 2014
Gene Model: December 22nd, 2014
26 days agootp51 organelle transcript processing51:
 
GRMZM2G325019
My Abdelmajid Kassem et al. 2024. A Summary of Two Decades of QTL and Candidate Genes That Control Seed Tocopherol Contents in Maize (Zea mays L.) Genes. 15:472.     Reference: April 9th, 2024
Gene Product: December 27th, 2016
Variation: October 20th, 2017
Gene Model: February 17th, 2015
26 days agocle16 clavata3/esr-related16:
 
GRMZM5G818232
My Abdelmajid Kassem et al. 2024. A Summary of Two Decades of QTL and Candidate Genes That Control Seed Tocopherol Contents in Maize (Zea mays L.) Genes. 15:472.     Reference: April 9th, 2024
Gene Product: February 22nd, 2021
Gene Model: September 17th, 2016
26 days agomcm1 minichromosome maintenance1:
 
GRMZM2G065205
Haoxiang Yang et al. 2024. QTL mapping for plant height and ear height using bi-parental immortalized heterozygous populations in maize. Frontiers in Plant Science. 15:1371394.   AT4G02060 (TAIR) Reference: April 9th, 2024
Gene Product: August 2nd, 2017
Gene Model: July 30th, 2017
26 days agohpt1 homogentisate phytyltransferase1:
 
GRMZM2G048472
My Abdelmajid Kassem et al. 2024. A Summary of Two Decades of QTL and Candidate Genes That Control Seed Tocopherol Contents in Maize (Zea mays L.) Genes. 15:472.     Reference: April 9th, 2024
Gene Product: January 8th, 2018
Gene Model: January 8th, 2018
26 days agohggt3 homogentisate geranylgeranyltransferase3:
 
GRMZM5G848876
My Abdelmajid Kassem et al. 2024. A Summary of Two Decades of QTL and Candidate Genes That Control Seed Tocopherol Contents in Maize (Zea mays L.) Genes. 15:472.     Reference: April 9th, 2024
Gene Product: January 8th, 2018
Gene Model: January 8th, 2018
26 days agohggt2 homogentisate geranylgeranyltransferase3:
 
GRMZM2G410644
My Abdelmajid Kassem et al. 2024. A Summary of Two Decades of QTL and Candidate Genes That Control Seed Tocopherol Contents in Maize (Zea mays L.) Genes. 15:472.     Reference: April 9th, 2024
Gene Product: January 8th, 2018
Gene Model: January 8th, 2018
26 days agovte4 vitamin E synthesis4:
5.06
GRMZM2G035213
My Abdelmajid Kassem et al. 2024. A Summary of Two Decades of QTL and Candidate Genes That Control Seed Tocopherol Contents in Maize (Zea mays L.) Genes. 15:472.     Reference: April 9th, 2024
Gene Product: June 26th, 2013
Gene Model: June 26th, 2013
26 days agoaaap36 amino acid/auxin permease36:
 
GRMZM2G161641
My Abdelmajid Kassem et al. 2024. A Summary of Two Decades of QTL and Candidate Genes That Control Seed Tocopherol Contents in Maize (Zea mays L.) Genes. 15:472.     Reference: April 9th, 2024
Gene Product: March 31st, 2021
Gene Model: March 30th, 2021
26 days agocry1 cryptochrome1:
5.05
GRMZM2G024739
My Abdelmajid Kassem et al. 2024. A Summary of Two Decades of QTL and Candidate Genes That Control Seed Tocopherol Contents in Maize (Zea mays L.) Genes. 15:472.     Reference: April 9th, 2024
Gene Product: August 31st, 2018
Gene Model: August 31st, 2018
26 days agoZm00001d009150  :
 
GRMZM2G003022
My Abdelmajid Kassem et al. 2024. A Summary of Two Decades of QTL and Candidate Genes That Control Seed Tocopherol Contents in Maize (Zea mays L.) Genes. 15:472.     Reference: April 9th, 2024
Gene Product: June 24th, 2022
Gene Model: June 24th, 2022
26 days agoIDP109  :
4.03
GRMZM5G892742
My Abdelmajid Kassem et al. 2024. A Summary of Two Decades of QTL and Candidate Genes That Control Seed Tocopherol Contents in Maize (Zea mays L.) Genes. 15:472.     Reference: April 9th, 2024
Variation: March 31st, 2005
Gene Model: May 21st, 2021
26 days agohppd1 4-hydroxyphenylpyruvate dioxygenase 1:
5.04
GRMZM2G088396
My Abdelmajid Kassem et al. 2024. A Summary of Two Decades of QTL and Candidate Genes That Control Seed Tocopherol Contents in Maize (Zea mays L.) Genes. 15:472.     Reference: April 9th, 2024
Gene Product: June 2nd, 2005
Variation: October 22nd, 2020
Gene Model: July 28th, 2016
26 days agoapg1 albino or pale green mutant1:
1.05
GRMZM2G082998
My Abdelmajid Kassem et al. 2024. A Summary of Two Decades of QTL and Candidate Genes That Control Seed Tocopherol Contents in Maize (Zea mays L.) Genes. 15:472.     Reference: April 9th, 2024
Variation: December 30th, 2015
Gene Model: February 17th, 2015
29 days agotru1 tassels replace upper ears1:
3.04 - 3.10
GRMZM2G039867
Hao Wu et al. 2024. A multiplexed transcriptomic analysis of a plant embryonic hourglass bioRxiv preprint. :doi: 10.1101/2024.04.04.588207.     Reference: April 6th, 2024
Gene Product: December 17th, 2013
Variation: December 18th, 2013
Gene Model: December 17th, 2013
29 days agowox3a WUSCHEL homeobox 3A:
6.01
GRMZM2G122537
Hao Wu et al. 2024. A multiplexed transcriptomic analysis of a plant embryonic hourglass bioRxiv preprint. :doi: 10.1101/2024.04.04.588207.     Reference: April 6th, 2024
Gene Product: August 25th, 2017
Variation: August 19th, 2018
Gene Model: August 18th, 2018
29 days agoarftf3 ARF-transcription factor 3:
 
   Hao Wu et al. 2024. A multiplexed transcriptomic analysis of a plant embryonic hourglass bioRxiv preprint. :doi: 10.1101/2024.04.04.588207.     Reference: April 6th, 2024
Gene Product: January 29th, 2022
29 days agons1 narrow sheath1:
2.05
   Hao Wu et al. 2024. A multiplexed transcriptomic analysis of a plant embryonic hourglass bioRxiv preprint. :doi: 10.1101/2024.04.04.588207.     Reference: April 6th, 2024
Gene Product: August 25th, 2017
Variation: February 20th, 2015
29 days agoyab14 yabby14:
10.05
   Hao Wu et al. 2024. A multiplexed transcriptomic analysis of a plant embryonic hourglass bioRxiv preprint. :doi: 10.1101/2024.04.04.588207.     Reference: April 6th, 2024
Gene Product: October 16th, 2015
Variation: March 23rd, 2009
29 days agoifa1 indeterminate floral apex1:
 
GRMZM2G088309
Hao Wu et al. 2024. A multiplexed transcriptomic analysis of a plant embryonic hourglass bioRxiv preprint. :doi: 10.1101/2024.04.04.588207.   AT1G69180 (TAIR)
LOC_Os03g11600 (MSU/TIGR)
Reference: April 6th, 2024
Gene Product: October 16th, 2015
Variation: July 13th, 2017
Gene Model: October 16th, 2015
29 days agotraf8 TNF receptor-associated factor 8:
 
GRMZM2G026556
Hao Wu et al. 2024. A multiplexed transcriptomic analysis of a plant embryonic hourglass bioRxiv preprint. :doi: 10.1101/2024.04.04.588207.     Reference: April 6th, 2024
Gene Product: June 30th, 2021
Gene Model: May 20th, 2019
29 days agochn22 chitinase22:
 
GRMZM2G099454
Hao Wu et al. 2024. A multiplexed transcriptomic analysis of a plant embryonic hourglass bioRxiv preprint. :doi: 10.1101/2024.04.04.588207.     Reference: April 6th, 2024
Gene Product: May 31st, 2021
Gene Model: May 31st, 2021
29 days agochn32 chitinase32:
 
GRMZM2G099454
Hao Wu et al. 2024. A multiplexed transcriptomic analysis of a plant embryonic hourglass bioRxiv preprint. :doi: 10.1101/2024.04.04.588207.     Reference: April 6th, 2024
Gene Product: May 31st, 2021
Gene Model: June 1st, 2021

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