STIFDB - Entry Name : AT1G05560

Stress Signals involved in

 NACL 

STIFDB Provides Data in 2 levels:



Gene Description : AT1G05560

Locus IdentifierGene Model NameGene Model DescriptionGene Model Type
AT1G05560AT1G05560.1A UDP-glucose transferase localized in the phragmoplast. It has been co-purified with the callose synthase complex and may transfer UDP-glucose from sucrose synthase to the callose synthase and thus help form a substrate channel for the synthesis of callose at the forming cell plate. Induced by salicylic acid. Independent of NPR1 for their induction by salicylic acid. UGT1 encodes a protein with glucosyltransferase activity with high sequence homology to UGT2 (AT1G05530). It belongs to an UGT subfamily that binds UDP-glucose but not UDP-glucuronate, UDP-galactose, or UDP-rhamnose as the glycosyl donor. UGT1 was shown to be able to use abscisic acid as glycosylation substrate in the presence of UDP-glucose.


Gene Ontology Data from TAIR : AT1G05560

GO Category GO Annotation Type GO ID GO Evidence Type References
Molecular Functiontransferase activity, transferring glycosyl groupsGO:0016757 ISSCommunication:1674999
Molecular FunctionUDP-glucosyltransferase activityGO:0035251 TASPublication:501718005|PMID:16307367
Biological Processpara-aminobenzoic acid metabolic processGO:0046482 IDAPublication:501724620|PMID:18385129
Molecular FunctionUDP-glycosyltransferase activityGO:0008194 ISSPublication:501679482|PMID:11283335
Molecular FunctionUDP-glycosyltransferase activityGO:0008194 TASPublication:501679482|PMID:11283335
Biological Processresponse to salicylic acid stimulusGO:0009751 IEPPublication:501718005|PMID:16307367
Biological Processcell plate formation involved in plant-type cell wall biogenesisGO:0009920 TASPublication:501679482|PMID:11283335
Cellular CompartmentphragmoplastGO:0009524 IDAPublication:501679482|PMID:11283335
Molecular Functionabscisic acid glucosyltransferase activityGO:0010294 IDAPublication:501719533
    Biological Process     Molecular Function     Cellular Compartment

Click here for Guide to GO Evidence Codes



Orthologs

Gene IdSorghum bicolorZea maysGlycine Max
AT1G05560Sb10g023120GRMZM2G344993GLYMA18G00620

 
 
           

Contact :

Prof. R. Sowdhamini

STIFDB TEAM :

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

Last Updated :

15th Oct, 2012