TSM1 — Beta vulgaris subsp. vulgaris
Summary
BvTSM1 (BVRB_9G216210) on sugar beet chromosome 9 encodes a cation-dependent O-methyltransferase with caffeoyl-CoA O-methyltransferase activity and trihydroxyferuloyl spermidine O-methyltransferase activity. The gene is associated with spermidine hydroxycinnamate conjugate biosynthesis, phenylpropanoid metabolism, coumarin and lignin anabolism, and carbohydrate metabolism. It has been linked to seed development, circadian rhythm, defence response to bacteria, and nitric oxide storage. Associations include flavonoid methylation patterns, spermidine conjugate O-methylation, aquaporin methylation, and tolerance to oxidative stress, salt stress, and drought, as well as ABA signaling and coumarin accumulation. The gene is also connected to lignin content, resistance to Ralstonia solanacearum, and nonhost resistance. Studies of related genes in other species link the family to pollen development, ferulate content, and defence response.
Annotations
- Chromosome
- 9
- Related genes
- TSM1, CCOAOMT1, F5A9.20, AtNHR2A, CCoAOMT7, AT3G62000, OMTF3, CCOAMT
- GO terms
- NO storage, protein methylase activity, phenylpropanoid metabolism, Trihydroxyferuloyl Spermidine O-methyltransferase Activity, Tricaffeoyl Spermidine:S-adenosyl-L-methionine O-methyltransferase Activity, Trihydroxyferuloyl Spermidine:S-adenosyl-L-methionine O-methyltransferase Activity, Caffeoyl-CoA O-methyltransferase Activity, SAM-dependent methyltransferase activity
- Publications
- 17254327, 15878986, 22487254, 18433503, 18480120, 16608451, 23216753, 16367961
- Traits
- resistance to Ralstonia solanacearum, coumarin accumulation, other miscellaneous trait, Reduced Lignin Content, Increased Saccharification Yield and Enzymatic Hydrolysis Efficiency, Increased Susceptibility to P. syringae, Reduced Callose Deposition, aLRLpMRL125, clim-aet4