BG1 — Nicotiana attenuata
Summary
A4A49_21127 (BG1) in coyote tobacco (Nicotiana attenuata) encodes a glycosyl hydrolase family 17 protein with glucan exo-1,3-beta-glucosidase, lichenase, cellulase, and glucan endo-1,3-beta-D-glucosidase activities. The gene is associated with defense response to nematode, response to water, cellular homeostasis, salicylic acid anabolism, detoxification, ethylene anabolism, embryogenesis, systemic acquired resistance, carbohydrate metabolism, response to bacteria, homeostasis, JA signaling, cell death, brassinosteroid mediated signalling, response to cold, defence response to fungi, and signal transduction. Its product localises to the secretory vesicle, vacuole, apoplast, plant-type cell wall, plant-type vacuole, Golgi complex, extracellular region, mitochondria, and cytosol. BG1 is associated with traits including carbohydrate content, quantum yield, net photosynthetic rate, nitrate uptake, transpiration rate, seed maturation, photosynthetic rate, stomatal resistance, leaf composition trait, seedling growth and development trait, organ identity, and photochemical quenching, as well as phenotypes such as anthocyanin accumulation, abscisic acid biosynthesis, phosphate acquisition, biotic stress tolerance, nematode resistance, disease resistance, pathogen defense response, dehydration resistance, salt tolerance, osmotic stress response, aphid susceptibility, callose deposition, stress response, pathogen response, drought tolerance, cellulose biosynthesis
Annotations
- Chromosome
- scaffold00163
- Related genes
- BG1, BG2, BG3, GRF2, AT4G16260
- GO terms
- homeostasis, Glucan Endo-1,3-beta-D-glucosidase Activity, Secretory Vesicle, Plant-type Vacuole, Cellulase Activity, Systemic Acquired Resistance, Vacuole, Detoxification
- Publications
- 28910327, 31632627, 15720685, 23858430, 8674533, 28422008, 12942327, 11851916
- Traits
- phosphate acquisition, systemic acquired resistance, callose biosynthesis, cellulose biosynthesis, anthocyanin accumulation, seedling growth, signal transduction, calcium signaling