School of Pharmacy, Wenzhou Medical University, Wenzhou, China.
School of Chinese Medicine, Wenzhou Medical University, Wenzhou, China.
Plant Cell Environ. 2024 Aug;47(8):3090-3110. doi: 10.1111/pce.14930. Epub 2024 Apr 28.
Plant JASMONATE ZIM-DOMAIN (JAZ) genes play crucial roles in regulating the biosynthesis of specialized metabolites and stressful responses. However, understanding of JAZs controlling these biological processes lags due to numerous JAZ copies. Here, we found that two leaf-specific CwJAZ4/9 genes from Curcuma wenyujin are strongly induced by methyl-jasmonate (MeJA) and negatively correlated with terpenoid biosynthesis. Yeast two-hybrid, luciferase complementation imaging and in vitro pull-down assays confirmed that CwJAZ4/9 proteins interact with CwMYC2 to form the CwJAZ4/9-CwMYC2 regulatory cascade. Furthermore, transgenic hairy roots showed that CwJAZ4/9 acts as repressors of MeJA-induced terpenoid biosynthesis by inhibiting the terpenoid pathway and jasmonate response, thus reducing terpenoid accumulation. In addition, we revealed that CwJAZ4/9 decreases salt sensitivity and sustains the growth of hairy roots under salt stress by suppressing the salt-mediated jasmonate responses. Transcriptome analysis for MeJA-mediated transgenic hairy root lines further confirmed that CwJAZ4/9 negatively regulates the terpenoid pathway genes and massively alters the expression of genes related to salt stress signaling and responses, and crosstalks of multiple phytohormones. Altogether, our results establish a genetic framework to understand how CwJAZ4/9 inhibits terpenoid biosynthesis and confers salt tolerance, which provides a potential strategy for producing high-value pharmaceutical terpenoids and improving resistant C. wenyujin varieties by a genetic approach.
植物茉莉酸 ZIM 结构域(JAZ)基因在调控特殊代谢物和应激反应的生物合成中起着至关重要的作用。然而,由于 JAZ 基因的数量众多,对其控制这些生物学过程的理解仍存在不足。在这里,我们发现来自莪术的两个叶特异性 CwJAZ4/9 基因强烈受甲基茉莉酸(MeJA)诱导,与萜类生物合成呈负相关。酵母双杂交、荧光素酶互补成像和体外下拉实验证实,CwJAZ4/9 蛋白与 CwMYC2 相互作用形成 CwJAZ4/9-CwMYC2 调控级联。此外,转基因毛状根显示 CwJAZ4/9 通过抑制萜类途径和茉莉酸反应来抑制 MeJA 诱导的萜类生物合成,从而减少萜类化合物的积累,作为 MeJA 诱导的萜类生物合成的抑制剂。此外,我们发现 CwJAZ4/9 通过抑制盐介导的茉莉酸反应来降低盐敏感性并维持毛状根在盐胁迫下的生长。对 MeJA 介导的转基因毛状根系进行转录组分析进一步证实,CwJAZ4/9 负调控萜类途径基因,并大量改变与盐胁迫信号转导和反应以及多种植物激素相互作用相关的基因表达。总之,我们的研究结果建立了一个遗传框架,以了解 CwJAZ4/9 如何抑制萜类生物合成并赋予耐盐性,这为通过遗传方法生产高价值药用萜类化合物和改良耐盐性莪术品种提供了一种潜在策略。