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二人转——植物免疫与油菜素内酯信号之间的分子联系。

It takes two to tango - molecular links between plant immunity and brassinosteroid signalling.

机构信息

Department of Biochemistry and Biophysics, Texas A&M University, College Station, TX 77843, USA

Amazonian Research Center Cimaz-Macagual, University of the Amazon, Florencia 180002622, Colombia.

出版信息

J Cell Sci. 2020 Nov 25;133(22):jcs246728. doi: 10.1242/jcs.246728.

Abstract

In response to the invasion of microorganisms, plants actively balance their resources for growth and defence, thus ensuring their survival. The regulatory mechanisms underlying plant immunity and growth operate through complex networks, in which the brassinosteroid phytohormone is one of the central players. In the past decades, a growing number of studies have revealed a multi-layered crosstalk between brassinosteroid-mediated growth and plant immunity. In this Review, by means of the tango metaphor, we immerse ourselves into the intimate relationship between brassinosteroid and plant immune signalling pathways that is tailored by the lifestyle of the pathogen and modulated by other phytohormones. The plasma membrane is the unique stage where brassinosteroid and immune signals are dynamically integrated and where compartmentalization into nanodomains that host distinct protein consortia is crucial for the dance. Shared downstream signalling components and transcription factors relay the tango play to the nucleus to activate the plant defence response and other phytohormonal signalling pathways for the finale. Understanding how brassinosteroid and immune signalling pathways are integrated in plants will help develop strategies to minimize the growth-defence trade-off, a key challenge for crop improvement.

摘要

为了应对微生物的入侵,植物会积极平衡其生长和防御所需的资源,从而确保自身的生存。植物免疫和生长的调控机制通过复杂的网络运作,其中,油菜素甾体植物激素是其中的核心参与者之一。在过去的几十年中,越来越多的研究揭示了油菜素甾体介导的生长和植物免疫之间的多层次串扰。在这篇综述中,我们通过探戈舞的比喻,深入研究了油菜素甾体和植物免疫信号通路之间的亲密关系,这种关系是由病原体的生活方式所决定的,并且受到其他植物激素的调节。质膜是油菜素甾体和免疫信号动态整合的独特阶段,而将其分隔成容纳不同蛋白质联合体的纳米区对于这场舞蹈至关重要。共享的下游信号成分和转录因子将探戈舞传递到细胞核,激活植物防御反应和其他植物激素信号通路,以达到终章。了解油菜素甾体和免疫信号通路在植物中的整合方式将有助于制定策略,以最小化生长-防御的权衡,这是作物改良的一个关键挑战。

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