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利用自然变异实现茉莉酸信号介导的植物整体功能响应的理解。

Using natural variation to achieve a whole-plant functional understanding of the responses mediated by jasmonate signaling.

机构信息

Department of Molecular Ecology, Max Planck Institute for Chemical Ecology, Hans-Knöll-Straße 8, D-07745, Jena, Germany.

出版信息

Plant J. 2019 Aug;99(3):414-425. doi: 10.1111/tpj.14331. Epub 2019 Apr 29.

Abstract

The dramatic advances in our understanding of the molecular biology and biochemistry of jasmonate (JA) signaling have been the subject of several excellent recent reviews that have highlighted the phytohormonal function of this signaling pathway. Here, we focus on the responses mediated by JA signaling which have consequences for a plant's Darwinian fitness, i.e. the organism-level function of JA signaling. The most diverse module in the signaling cascade, the JAZ proteins, and their interactions with other proteins and transcription factors, allow this canonical signaling cascade to mediate a bewildering array of traits in different tissues at different times; the functional coherence of these diverse responses are best appreciated in an organismal/ecological context. From published work, it appears that jasmonates can function as the 'Swiss Army knife' of plant signaling, mediating many different biotic and abiotic stress and developmental responses that allow plants to contextualize their responses to their frequently changing local environments and optimize their fitness. We propose that a deeper analysis of the natural variation in both within-plant and within-population JA signaling components is a profitable means of attaining a coherent whole-plant functional perspective of this signaling cascade, and provide examples of this approach from the Nicotiana attenuata system.

摘要

茉莉酸(JA)信号转导的分子生物学和生物化学的显著进展,是最近几篇优秀综述的主题,这些综述强调了这条信号通路的植物激素功能。在这里,我们专注于 JA 信号转导介导的对植物达尔文适合度(即 JA 信号转导的生物体水平功能)有影响的反应。在信号级联中最多样化的模块是 JAZ 蛋白,以及它们与其他蛋白质和转录因子的相互作用,使这条经典的信号级联能够在不同时间和不同组织中介导一系列令人眼花缭乱的特征;在生物体/生态背景下,这些不同反应的功能一致性最容易被理解。从已发表的研究来看,茉莉酸似乎可以作为植物信号的“瑞士军刀”,介导许多不同的生物和非生物胁迫以及发育反应,使植物能够根据其经常变化的局部环境对其反应进行情境化,并优化其适合度。我们提出,对植物内和种群内 JA 信号转导组件的自然变异进行更深入的分析,是获得对这条信号级联的整体植物功能视角的有益手段,并从 Nicotiana attenuata 系统中提供了这种方法的例子。

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