Department of Plant Biology, Ecology and Evolution, Oklahoma State University, Stillwater, OK, 74078, USA.
Plant Science Research Laboratory, United States Department of Agriculture-Agricultural Research Service (USDA-ARS), Stillwater, OK, 74075, USA.
Sci Rep. 2022 Feb 25;12(1):3238. doi: 10.1038/s41598-022-07181-9.
Jasmonate ZIM-domain (JAZ) proteins are the key repressors of the jasmonic acid (JA) signal transduction pathway and play a crucial role in stress-related defense, phytohormone crosstalk and modulation of the growth-defense tradeoff. In this study, the sorghum genome was analyzed through genome-wide comparison and domain scan analysis, which led to the identification of 18 sorghum JAZ (SbJAZ) genes. All SbJAZ proteins possess the conserved TIFY and Jas domains and they formed a phylogenetic tree with five clusters related to the orthologs of other plant species. Similarly, evolutionary analysis indicated the duplication events as a major force of expansion of the SbJAZ genes and there was strong neutral and purifying selection going on. In silico analysis of the promoter region of the SbJAZ genes indicates that SbJAZ5, SbJAZ6, SbJAZ13, SbJAZ16 and SbJAZ17 are rich in stress-related cis-elements. In addition, expression profiling of the SbJAZ genes in response to phytohormones treatment (JA, ET, ABA, GA) and sugarcane aphid (SCA) was performed in two recombinant inbred lines (RILs) of sorghum, resistant (RIL 521) and susceptible (RIL 609) to SCA. Taken together, data generated from phytohormone expression and in silico analysis suggests the putative role of SbJAZ9 in JA-ABA crosstalk and SbJAZ16 in JA-ABA and JA-GA crosstalk to regulate certain physiological processes. Notably, upregulation of SbJAZ1, SbJAZ5, SbJAZ13 and SbJAZ16 in resistant RIL during JA treatment and SCA infestation suggests putative functions in stress-related defense and to balance the plant defense to promote growth. Overall, this report provides valuable insight into the organization and functional characterization of the sorghum JAZ gene family.
茉莉酸 ZIM 结构域(JAZ)蛋白是茉莉酸(JA)信号转导途径的关键阻遏物,在与应激相关的防御、植物激素交叉对话以及生长-防御权衡的调节中发挥着至关重要的作用。在本研究中,通过全基因组比较和结构域扫描分析对高粱基因组进行了分析,鉴定出 18 个高粱 JAZ(SbJAZ)基因。所有 SbJAZ 蛋白都具有保守的 TIFY 和 Jas 结构域,并与其他植物物种的同源物形成了一个包含五个聚类的系统发育树。同样,进化分析表明,复制事件是 SbJAZ 基因扩张的主要力量,并且存在强烈的中性和纯化选择。对 SbJAZ 基因启动子区的计算机分析表明,SbJAZ5、SbJAZ6、SbJAZ13、SbJAZ16 和 SbJAZ17 富含与应激相关的顺式元件。此外,在两个高粱重组自交系(RIL)中,对 SbJAZ 基因在植物激素处理(JA、ET、ABA、GA)和甘蔗蚜虫(SCA)胁迫下的表达谱进行了分析,这两个 RIL 对 SCA 表现出抗性(RIL521)和敏感性(RIL609)。综上所述,植物激素表达和计算机分析的数据表明,SbJAZ9 可能参与了 JA-ABA 交叉对话,SbJAZ16 可能参与了 JA-ABA 和 JA-GA 交叉对话,以调节某些生理过程。值得注意的是,JA 处理和 SCA 侵染期间,抗性 RIL 中 SbJAZ1、SbJAZ5、SbJAZ13 和 SbJAZ16 的上调表明它们在与应激相关的防御以及平衡植物防御以促进生长方面可能具有功能。总的来说,本报告为高粱 JAZ 基因家族的组织和功能特征提供了有价值的见解。