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SmJAZ8 作为核心阻遏物调控丹参毛状根中茉莉酸诱导的丹酚酸和丹参酮生物合成。

SmJAZ8 acts as a core repressor regulating JA-induced biosynthesis of salvianolic acids and tanshinones in Salvia miltiorrhiza hairy roots.

机构信息

College of Life Sciences, Northwest A & F University, Yangling, China.

College of Life Sciences, Zhejiang Sci-Tech University, Hangzhou, China.

出版信息

J Exp Bot. 2018 Mar 24;69(7):1663-1678. doi: 10.1093/jxb/erx484.

Abstract

Jasmonates (JAs) are important plant hormones that regulate a variety of plant development and defense processes, including biosynthesis of secondary metabolites. The JASMONATE ZIM DOMAIN (JAZ) proteins act as negative regulators in the JA signaling pathways of plants. We first verified that methyl jasmonate (MeJA) enhanced the accumulation of both salvianolic acids and tanshinones in Salvia miltiorrhiza (Danshen) hairy roots by inducing the expression of their biosynthetic pathway genes. Nine JAZ genes were cloned from Danshen and their expression levels in hairy roots were all increased by treatment with MeJA. When analyzed in detail, however, SmJAZ8 showed the strongest expression in the induced hairy roots. Overexpression or RNAi of SmJAZ8 deregulated or up-regulated the yields of salvianolic acids and tanshinones in the MeJA-induced transgenic hairy roots, respectively, and transcription factors and biosynthetic pathway genes showed an expression pattern that mirrored the production of the compounds. Genetic transformation of SmJAZ8 altered the expression of other SmJAZ genes, suggesting evidence of crosstalk occurring in JAZ-regulated secondary metabolism. Furthermore, the transcriptome analysis revealed a primary-secondary metabolism balance regulated by SmJAZ8. Altogether, we propose a novel role for SmJAZ8 as a negative feedback loop controller in the JA-induced biosynthesis of salvianolic acids and tanshinones.

摘要

茉莉酸(JAs)是一种重要的植物激素,调节多种植物发育和防御过程,包括次生代谢物的生物合成。JASMONATE ZIM DOMAIN(JAZ)蛋白作为植物 JA 信号通路的负调控因子。我们首先验证了茉莉酸甲酯(MeJA)通过诱导其生物合成途径基因的表达,增强丹参毛状根中丹酚酸和丹参酮的积累。从丹参中克隆了 9 个 JAZ 基因,它们在毛状根中的表达水平均被 MeJA 处理所上调。然而,当详细分析时,SmJAZ8 在诱导的毛状根中表现出最强的表达。SmJAZ8 的过表达或 RNAi 分别调节 MeJA 诱导的转基因毛状根中丹酚酸和丹参酮的产量,转录因子和生物合成途径基因的表达模式与化合物的产生相吻合。SmJAZ8 的遗传转化改变了其他 SmJAZ 基因的表达,表明在 JAZ 调控的次生代谢中存在串扰的证据。此外,转录组分析揭示了 SmJAZ8 调节的初级-次级代谢平衡。总之,我们提出了 SmJAZ8 在 JA 诱导的丹酚酸和丹参酮生物合成中作为负反馈环控制器的新作用。

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