GL1A — Oryza sativa Indica Group
Summary
BGIOSGA026527 (GL1A, OiGL1A) on Indica rice chromosome 8 encodes a protein with Myb_TF_plants, Myb_dom, SANT/Myb and Homeodomain-like_sf domains, and has DNA binding transcription factor activity, sequence-specific DNA binding, transcription cis-regulatory region binding, cis-regulatory region sequence-specific DNA binding, protein dimerization activity, protein homodimerization activity, identical protein binding, protein binding, DNA binding, and small GTPase binding. The gene is associated with regulation of flavonol biosynthetic process, downregulation of sinapate ester anabolism, regulation of proanthocyanidin anabolism, regulation of flavonoid anabolism, trichome spacing, positive regulation of anthocyanin anabolism, shikimate pathway, trichome differentiation, pigmentation, regulation of phenylpropanoid metabolism, regulation of lignin anabolism, seed coat development, protein nucleus import, embryo shoot apical meristem specification, green leaf volatile biosynthetic process, anthocyanin anabolism, response to UV-B, and vascular tissue pattern formation. It localises to the nucleus, cytoplasm and root hair. GL1A is linked to hull color, leaf trichome density, brassinosteroid content, UV-B light sensitivity, biotic plant stress trait, iron concentration, shoot apical meristem development, trichome morphology trait, grain length, brassinosteroid sensitivity, nitrate uptake, jasmonic acid
Annotations
- Chromosome
- 8
- Related genes
- GL1A, TPL, TPR2, MYB7, TT8, EMA1, MYB32, MYB4
- GO terms
- Circadian Rhythm, Green Leaf Volatile Biosynthetic Process, Protein Homodimerization Activity, Regulation Of Gene Expression, protein nucleus import, Transcription Cis-regulatory Region Binding, Cis-regulatory Region Sequence-specific DNA Binding, downregulation of transcription, DNA-dependent
- Publications
- 31013972, 21963667, 22476455, 29619039, 30225301, 32785253, 16720694, 33793890
- Traits
- vascular lignification, apical hook formation, jasmonate signaling, triploid seed development, anthocyanin biosynthesis, iron deficiency tolerance, iron accumulation, disease resistance