BOS1 — Cicer arietinum

Summary

LOC101491696, also known as CaBOS1, CaMYB78, or CaMYB108, encodes a protein with sequence-specific DNA binding, transcription cis-regulatory region binding, DNA binding, DNA binding transcription factor activity, protein binding, cysteine-type endopeptidase inhibitor activity, and ubiquitin-protein transferase activity. The gene is associated with positive regulation of anther dehiscence, pigment biosynthetic process involved in pigment accumulation, pigment accumulation in tissues, upregulation of phytoalexin biosynthesis, phlobaphene biosynthetic process, shikimate metabolism, cellular response to virus, regulation of cell wall organization or biogenesis, pigment anabolism, floral organ senescence, demethylation, pigmentation, regulation of phenylpropanoid metabolism, upregulation of defense response to insect, downregulation of programmed cell death, green leaf volatile biosynthetic process, response to stress, and response to fungi. The encoded protein localizes to the plant-type cell wall, cytoplasm, and nucleus. CaBOS1 is associated with traits including gibberellic acid sensitivity, flowering time, disease tolerance, and salt tolerance, and with phenotypes such as cell death, increased Botrytis susceptibility, spontaneous cell death, stamen development, stamen maturation, pollen viability, anther dehiscence, male fertility, Botrytis susceptibility, Botrytis resistance, wound induced cell death, disease resistance, lateral root development, wound-induced cell death, oxidative stress tolerance

Annotations

Chromosome
1
Related genes
BOS1, BOI, MYB78
GO terms
Plant-type Cell Wall, Circadian Rhythm, Response To Jasmonic Acid, shikimate metabolism, response to fungi, Flower Development, antiviral response, defence response to fungi
Publications
28017649, 20736450, 26873979, 15310832, 28441590, PMID:25533953, PMID:11118137, PMID:15500471
Traits
cell death, Botrytis susceptibility, fertility, lateral root development, other miscellaneous trait, Mis-regulated Cell Death Development, Increased Botrytis Susceptibility, Spontaneous Cell Death, clim-bio9