FRD3 — Oryza sativa Indica Group

Summary

BGIOSGA031723 (OiFRD3) on chromosome 10 of Indica rice encodes an RNase H type-1 domain-containing protein with citrate transmembrane transporter activity, metal ion transmembrane transporter activity, iron channel activity, RNase H activity, and nucleic acid binding, and belongs to the DinF-like and RNase H-like domain families. The gene is associated with cellular iron ion homeostasis, multicellular organismal iron ion homeostasis, chlorophyll fluorescence, detoxification, cellular response to phosphate starvation, metal ion transport, and response to abscisic acid. It is linked to iron homeostasis, iron accumulation, iron transport, iron translocation, pollen viability, seed germination, copper tolerance, root growth, phosphate-dependent root growth, chlorotic iron accumulation with trichome defects, iron localization, stomatal resistance, chlorophyll content, and sheath. Localized to the membrane and plasmalemma, OiFRD3 is also associated with plasma membrane, stamen, transporter, fertility, node, reproductive growth, iron, pollen, grain, reproductive, growth, aluminum tolerance, root, shoot, leaf, vascular bundle, aluminum, Al tolerance, transcription factor, tolerance, and xylem. Related genes in other species are linked to metal homeostasis, iron deficiency response, zinc tolerance, zinc homeostasis, pale green seedlings with reduced size and high metal accumulation, chlorotic constitutive ferric chelate reductase activity, chlorosis, aluminium tolerance, and traits including manganese concentration, copper sensitivity, iron content

Annotations

Chromosome
10
Related genes
FRD3
GO terms
homeostasis, Chlorophyll Fluorescence, multicellular organismal iron ion homeostasis, Metal Ion Transmembrane Transporter Activity, Nucleic Acid Binding, cellular iron ion homeostasis, plasmalemma, Detoxification
Publications
16297074, 18631293, 11299349, 19342121, PMID:17317660, 16844841, PMID:22983673, PMID:24034075
Traits
iron homeostasis, iron transport, copper tolerance, Pale Green Seedlings, Reduced Size, High Metal Accumulation, Chlorotic, Constitutive Ferric Chelate Reductase Activity, Chlorotic, Iron Accumulation, Trichome Defects, iron accumulation, iron deficiency response