STIFDB - Entry Name : AT4G26850

Stress Signals involved in

 COLD  OXIDATIVE-STRESS 

STIFDB Provides Data in 2 levels:



Gene Description : AT4G26850

Locus IdentifierGene Model NameGene Model DescriptionGene Model Type
AT4G26850AT4G26850.1Encodes a novel protein involved in ascorbate biosynthesis, which was shown to catalyze the transfer of GMP from GDP-galactose to a variety of hexose-1-phosphate acceptors. Recessive mutation has a reduced amount of vitamin C, lower level of non-photochemical quenching, and reduced rate of conversion of violaxanthin to zeaxanthin in high light.


Gene Ontology Data from TAIR : AT4G26850

GO Category GO Annotation Type GO ID GO Evidence Type References
Biological Processdefense response to bacteriumGO:0042742 IMPPublication:501717856|PMID:16244149
Biological ProcessL-ascorbic acid biosynthetic processGO:0019853 IMPPublication:1547390|PMID:11891252
Molecular FunctionGDP-galactose:myoinositol-1-phosphate guanyltransferase activityGO:0010473 IDAPublication:501721624|PMID:17485667
Molecular Functiongalactose-1-phosphate guanylyltransferase (GDP) activityGO:0010475 IDAPublication:501721316|PMID:17462988
Molecular FunctionGDP-galactose:mannose-1-phosphate guanyltransferase activityGO:0010471 IDAPublication:501721624|PMID:17485667
Biological Processresponse to heatGO:0009408 IMPPublication:501716362|PMID:15923322
Molecular FunctionGDP-galactose:glucose-1-phosphate guanyltransferase activityGO:0010472 IDAPublication:501721624|PMID:17485667
Molecular Functionmannose-1-phosphate guanylyltransferase (GDP) activityGO:0008928 IDAPublication:501721316|PMID:17462988
Cellular Compartmentcellular_component_unknownGO:0005575 NDCommunication:1345790
Biological Processresponse to jasmonic acid stimulusGO:0009753 IEPPublication:501717964|PMID:16262714
Molecular Functionglucose-1-phosphate guanylyltransferase (GDP) activityGO:0010474 IDAPublication:501721316|PMID:17462988
    Biological Process     Molecular Function     Cellular Compartment

Click here for Guide to GO Evidence Codes



Orthologs

Gene IdSorghum bicolorZea maysGlycine Max
AT4G26850Sb03g042900GRMZM2G359397GLYMA18G10430

 
 
           

Contact :

Prof. R. Sowdhamini

STIFDB TEAM :

Prof. R. Sowdhamini | Shameer Khader
Mahantesha Naika B. N. | Oommen K. M.

Last Updated :

15th Oct, 2012