Verma Subodh, Bhatia Sabhyata
National Institute of Plant Genome Research, Aruna Asaf Ali Marg, PO Box No. 10531, New Delhi, 110067 India.
3 Biotech. 2019 Sep;9(9):346. doi: 10.1007/s13205-019-1875-5. Epub 2019 Aug 26.
The aim of this study was to provide a comprehensive analysis of the plant-specific B3 domain-containing transcription factors (TFs) in chickpea. Scanning of the chickpea genome resulted in the identification of 51 B3 domain-containing TFs that were located on seven out of eight chickpea chromosomes. Based on the presence of additional domains other than the B3 domain, the candidates were classified into four subfamilies, i.e., ARF (24), REM (19), LAV (6) and RAV (2). Phylogenetic analysis classified them into four groups in which members of the same group had similar intron-exon organization and motif composition. Genome duplication analysis of the candidate B3 genes revealed an event of segmental duplication that was instrumental in the expansion of the B3 gene family. Ka/Ks analysis showed that the B3 gene family was under purifying selection. Further, chickpea B3 genes showed maximum orthology with followed by soybean and . Promoter analyses of the B3 genes led to the identification of several tissue-specific and stress-responsive -regulatory elements. Expression profiling of the candidate B3 genes using publicly available RNA-seq data of several chickpea tissues indicated their putative role in plant development and abiotic stress response. These findings were further validated by real-time expression analysis. Overall, this study provides a comprehensive analysis of the B3 domain-containing proteins in chickpea that would aid in devising strategies for crop manipulation in chickpea.
本研究的目的是对鹰嘴豆中植物特有的含B3结构域转录因子(TFs)进行全面分析。对鹰嘴豆基因组进行扫描后,鉴定出51个含B3结构域的TFs,它们位于鹰嘴豆8条染色体中的7条上。根据除B3结构域外其他结构域的存在情况,将这些候选基因分为四个亚家族,即ARF(24个)、REM(19个)、LAV(6个)和RAV(2个)。系统发育分析将它们分为四组,同一组的成员具有相似的内含子-外显子组织和基序组成。对候选B3基因的基因组重复分析揭示了一次片段重复事件,这对B3基因家族的扩展起到了重要作用。Ka/Ks分析表明B3基因家族受到纯化选择。此外,鹰嘴豆B3基因与[具体物种1]的直系同源性最高,其次是大豆和[具体物种2]。对B3基因的启动子分析导致鉴定出几个组织特异性和应激反应性调控元件。利用鹰嘴豆多个组织公开可用的RNA-seq数据对候选B3基因进行表达谱分析,表明它们在植物发育和非生物胁迫反应中具有假定作用。这些发现通过实时表达分析得到进一步验证。总体而言,本研究对鹰嘴豆中含B3结构域的蛋白质进行了全面分析,这将有助于制定鹰嘴豆作物改良策略。