LP1 — Triticum turgidum subsp. durum
Summary
TRITD3AV1G013650 (LP1) on durum wheat chromosome 3A encodes a protein with a Plant_nsLTP domain and a bifunctional inhibitor/LTP/seed storage superfamily domain. The product exhibits lipid carrier activity, chitosan binding, lipid binding, histone H2AS1 kinase activity, chitin binding, transmembrane receptor protein kinase activity, calmodulin binding, calcium ion binding, kinase activity, protein kinase activity, protein homodimerization activity, identical protein binding, protein serine/threonine kinase activity, and ATP binding. LP1 is associated with phospholipid transfer to membrane, cutin-based cuticle development, Ca2+ ion detection, detection of peptidoglycan, cellular response to chitin, lipid transport, cellular response to molecule of bacterial origin, cell surface PRR signaling pathway, cutin anabolism, plant epidermal cell differentiation, mechanical stimulus response, positive regulation of HR, detection of molecule of fungal origin, response to salt, response to chitin, intracellular signal transduction, programmed cell death, and protein autophosphorylation. It has been linked to bacterial blight disease resistance, jasmonic acid content, stomatal complex closure time, leaf senescence, seed growth and development, abscisic acid sensitivity, flowering time, disease tolerance, salt tolerance, and drought tolerance. The protein localises to the secretory vesicle, chloroplast thylakoid, TGN, endosome, apoplast, plant-type cell wall
Annotations
- Chromosome
- 3A
- Related genes
- LP1, CAM1, LTP, LTP110-A; LTP110-B, T30D6.12, LYK1, LTP4, LTP3
- GO terms
- Cellular Response To Molecule Of Bacterial Origin, Endosome, positive regulation of HR, Plastid, Transmembrane Receptor Protein Kinase Activity, Protein Homodimerization Activity, innate immunity, Protein Serine/threonine Kinase Activity
- Publications
- 33930152, 30252617, 17172353, 16630346, 18433503, 33463038, 21307038, 17189330
- Traits
- stomatal closure, seed germination, fungal disease resistance, disease resistance, herbivory resistance, jasmonic acid biosynthesis, herbivore resistance, electromagnetic field response