Zhao Peiyu, Zheng Jiaxin, Xu Qiuyan, Zhao Shengnan, Li Jie, Zhu Yaxuan, Yan Jingli, Chen Qinqin, Yang Bo, Li Chun, Han Feng, Jiang Yuan-Qing
Shenzhen Research Institute, Northwest A & F University, Shenzhen, Guangdong 518000, China.
College of Life Sciences, Northwest A & F University, Yangling, Shaanxi 712100, China.
J Agric Food Chem. 2025 Aug 20;73(33):20955-20971. doi: 10.1021/acs.jafc.5c01237. Epub 2025 Aug 5.
The phytohormone jasmonic acid (JA) plays an important role in diverse physiological processes. The jasmonate ZIM-domain (JAZ) proteins act as repressors of JA signaling and have been extensively studied in . However, little is known about their function in the oil crop rapeseed ( L.). Here, a total of ten BnaJAZs were cloned, whose encoded proteins harbor complete TIFY and Jas domains. Phylogenetic analysis showed that the BnaJAZs from representative plant species are clustered into five groups. Subcellular localization assay showed that BnaJAZs can function in nuclei and/or the cytoplasm. RT-qPCR results demonstrated that BnaJAZs displayed differential expression patterns and most showed induction by JA and significant changes to ABA (abscisic acid), salt, and dehydration treatments. Further, we found that overexpression (OE) of improved drought tolerance, while RNAi silencing of it decreased drought tolerance. Moreover, overexpression of enhanced the salinity sensitivity. A further RNA-seq analysis uncovered the differentially expressed genes and relevant pathways implicated in the biosynthesis of osmoprotectants and stress hormones as well as ROS scavenging were mostly up- and down-regulated in -OE and -OE lines, respectively, compared with -OE. In summary, this study provides a basis for further exploration of BnaJAZ functions in abiotic stress response and tolerance for the goal of developing stress-tolerant cultivars.
植物激素茉莉酸(JA)在多种生理过程中发挥着重要作用。茉莉酸ZIM结构域(JAZ)蛋白作为JA信号的抑制因子,已在[具体研究对象]中得到广泛研究。然而,它们在油料作物油菜([油菜学名])中的功能却鲜为人知。在此,共克隆了10个BnaJAZs,其编码的蛋白质含有完整的TIFY和Jas结构域。系统发育分析表明,来自代表性植物物种的BnaJAZs可分为五组。亚细胞定位分析表明,BnaJAZs可在细胞核和/或细胞质中发挥作用。RT-qPCR结果表明,BnaJAZs呈现出不同的表达模式,大多数在JA诱导下表达,并且在脱落酸(ABA)、盐和脱水处理下有显著变化。此外,我们发现[具体基因]的过表达(OE)提高了耐旱性,而其RNA干扰沉默则降低了耐旱性。此外,[具体基因]的过表达增强了盐敏感性。进一步的RNA测序分析发现,与[具体对照OE]相比,在[具体基因]OE和[具体基因]OE株系中,参与渗透保护剂和应激激素生物合成以及活性氧清除的差异表达基因和相关途径大多分别上调和下调。总之,本研究为进一步探索BnaJAZ在非生物胁迫响应中的功能以及培育耐胁迫品种提供了基础。