11N3 — Oryza sativa Indica Group

Summary

BGIOSGA029467 (symbol 11N3, also known as SWEET14, SWEET15, XA13, and MTN3) on chromosome 9 of Indica rice encodes a SWEET-family protein with gibberellin transmembrane transporter activity, sucrose permease activity, sugar transmembrane transporter activity, and protein binding capability. The gene is associated with grain filling, yield, plant height, endosperm, sucrose, breeding, resistance to Xoo, development, root, leaf, fertility, pollen, pollen development, sugar, plasma membrane, flowering, embryo, embryo development, abiotic stress, transcription factor, drought, abscisic acid, salt, biotic stress, stress, and salt stress. It is also associated with panicle length, photosynthetic rate, plant height, fertility restoration, male fertility, starch, grain weight, grain-filling, pericarp, salicylic acid-mediated defense response, disease susceptibility, sugar accumulation, disease resistance, assimilate translocation, nectar secretion, sugar transport, sucrose unloading from phloem, growth, bacterial blight, blight, seedling, reduced embryo size, nitrogen remobilization, nitrogen use efficiency, vascular cell wall composition, carbon allocation, plant fertility, seed development, cell viability, nematode resistance, bacterial blight resistance, senescence, and salt tolerance. The protein localizes to the plasma membrane, Golgi membrane, trans-Golgi network membrane, vesicle membrane, and extracellular region

Annotations

Chromosome
9
Related genes
11N3, RPG2, SWEET10, SWEET11, SWEET14, MTN3, SWEET12, SAG29
GO terms
Vesicle Membrane, Protein Homooligomerization, Pollen Development, cellular response to salicylate stimulus, Embryo Development Ending In Seed Dormancy, Regulation Of Gene Expression, Golgi Membrane, Sugar Transmembrane Transporter Activity
Publications
34037757, 35609084, 15247402, 16626450, 18218973, 15448178, 16500996, 16640606
Traits
carbon allocation, root apical meristem activity, pollen germination, pollen viability, male fertility, nitrogen use efficiency, nitrogen remobilization, root growth under salt stress