AUTHOR=Lei Yuqian , Cui Yupeng , Cui Ruifeng , Chen Xiugui , Wang Junjuan , Lu Xuke , Wang Delong , Wang Shuai , Guo Lixue , Zhang Yuexin , Rui Cun , Fan Yapeng , Han Mingge , Zhao Lanjie , Zhang Hong , Liu Xiaoyu , Xu Nan , Wang Jing , Huang Hui , Feng Xixian , Xi Yanlong , Ni Kesong , Zhang Menghao , Jiang Tiantian , Ye Wuwei TITLE=Characterization and gene expression patterns analysis implies BSK family genes respond to salinity stress in cotton JOURNAL=Frontiers in Genetics VOLUME=14 YEAR=2023 URL=https://www.frontiersin.org/journals/genetics/articles/10.3389/fgene.2023.1169104 DOI=10.3389/fgene.2023.1169104 ISSN=1664-8021 ABSTRACT=
Identification, evolution, and expression patterns of BSK (BR signaling kinase) family genes revealed that BSKs participated in the response of cotton to abiotic stress and maintained the growth of cotton in extreme environment. The steroidal hormone brassinosteroids (BR) play important roles in different plant biological processes. This study focused on BSK which were downstream regulatory element of BR, in order to help to decipher the functions of BSKs genes from cotton on growth development and responses to abiotic stresses and lean the evolutionary relationship of cotton BSKs. BSKs are a class of plant-specific receptor-like cytoplasmic kinases involved in BR signal transduction. In this study, bioinformatics methods were used to identify the cotton BSKs gene family at the cotton genome level, and the gene structure, promoter elements, protein structure and properties, gene expression patterns and candidate interacting proteins were analyzed. In the present study, a total of 152 BSKs were identified by a genome-wide search in four cotton species and other 11 plant species, and phylogenetic analysis revealed three evolutionary clades. It was identified that BSKs contain typical PKc and TPR domains, the N-terminus is composed of extended chains and helical structures. Cotton BSKs genes show different expression patterns in different tissues and organs. The gene promoter contains numerous