Department of Molecular Ecology, Max Planck Institute for Chemical Ecology, D-07745 Jena, Germany.
Department of Biochemistry, Max Planck Institute for Chemical Ecology, D-07745 Jena, Germany.
Plant Physiol. 2018 Jun;177(2):833-846. doi: 10.1104/pp.18.00315. Epub 2018 May 2.
The jasmonate (JA) phytohormone signaling system is an important mediator of plant defense against herbivores. Plants deficient in JA signaling are more susceptible to herbivory as a result of deficiencies in defensive trait expression. Recent studies have implicated the circadian clock in regulating JA-mediated defenses, but the molecular mechanisms linking the clock to JA signaling are unclear. Here, we report that wild tobacco () plants rendered deficient in the clock component ZEITLUPE (ZTL) by RNA interference have attenuated resistance to the generalist herbivore This effect can be attributed in part to reduced concentrations of nicotine, an abundant JA-regulated toxin produced in roots and transported to shoots. RNA interference targeting ZTL dramatically affects the root circadian clock and reduces the expression of nicotine biosynthetic genes. Protein-protein interaction experiments demonstrate that ZTL regulates JA signaling by directly interacting with JASMONATE ZIM domain (JAZ) proteins in a CORONATINE-INSENSITIVE1- and jasmonoyl-isoleucine conjugate-independent manner, thereby regulating a JAZ-MYC2 module that is required for nicotine biosynthesis. Our study reveals new functions for ZTL and proposes a mechanism by which a clock component directly influences JA signaling to regulate plant defense against herbivory.
茉莉酸(JA)植物激素信号系统是植物抵御草食性动物的重要介体。由于防御特性表达的缺陷,JA 信号转导缺陷的植物更容易受到草食性动物的侵害。最近的研究表明,生物钟在调节 JA 介导的防御中起作用,但生物钟与 JA 信号转导之间的分子机制尚不清楚。在这里,我们报告说,通过 RNA 干扰使野生烟草()植物中时钟成分 ZEITLUPE(ZTL)缺陷,会减弱对一般草食动物的抗性。这种效应部分归因于尼古丁浓度降低,尼古丁是一种在()根中大量产生的 JA 调控毒素,并被运输到地上部分。针对 ZTL 的 RNA 干扰实验极大地影响了根生物钟,并降低了尼古丁生物合成基因的表达。蛋白-蛋白相互作用实验表明,ZTL 通过直接与 CORONATINE-INSENSITIVE1 和茉莉酸异亮氨酸共轭物不依赖的方式与 JASMONATE ZIM 结构域(JAZ)蛋白相互作用,从而调节 JA 信号转导,进而调节尼古丁生物合成所必需的 JAZ-MYC2 模块。我们的研究揭示了 ZTL 的新功能,并提出了一个时钟成分直接影响 JA 信号转导来调节植物抵御草食性动物的机制。