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Connecting Growth and Defense: The Emerging Roles of Brassinosteroids and Gibberellins in Plant Innate Immunity

机译:连接生长与防御:油菜素类固醇和赤霉素在植物固有免疫中的新兴作用

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摘要

Brassinosteroids (BRs) and gibberellins (GAs) are two groups of phytohormones that regulate many common developmental processes throughout the plant life cycle. Fueled by large-scale 'omics' technologies and the burgeoning field of plant computational biology, the past few years have witnessed paradigm-shifting advances in our understanding of how BRs and GA are perceived and their signals transduced. Accumulating evidence also implicates BR and GA in the coordination and integration of plant immune responses. Similarly to other growth regulators, BR and GA play ambiguous roles in molding pathological outcomes, the effects of which may depend not only on the pathogen's lifestyle and infection strategy, but also on specialized features of each interaction. Analysis of the underpinning molecular mechanisms points to a crucial role of GA-inhibiting DELLA proteins and the BR-regulated transcription factor BZR1. Acting at the interface of developmental and defense signaling, these proteins likely serve as central hubs for pathway crosstalk and signal integration, allowing appropriate modulation of plant growth and defense in response to various stimuli. In this review, we outline the latest discoveries dealing with BR and GA modulation of plant innate immunity and highlight interactions between BR and GA signaling, plant defense, and microbial virulence.
机译:油菜素类固醇(BRs)和赤霉素(GAs)是两组植物激素,它们在整个植物生命周期中调节许多常见的发育过程。在大规模的“组学”技术和新兴的植物计算生物学领域的推动下,过去几年见证了我们对BR和GA的感知方式及其信号转导方式的转变。越来越多的证据还表明BR和GA参与了植物免疫应答的协调和整合。与其他生长调节剂相似,BR和GA在塑造病理结果中起模棱两可的作用,其影响可能不仅取决于病原体的生活方式和感染策略,而且还取决于每种相互作用的特殊特征。对基础分子机制的分析指出,GA抑制DELLA蛋白和BR调节的转录因子BZR1发挥了关键作用。这些蛋白质在发育和防御信号转导的界面上起作用,可能充当途径串扰和信号整合的中心枢纽,从而响应各种刺激而适当调节植物的生长和防御。在这篇综述中,我们概述了有关BR和GA调节植物固有免疫力的最新发现,并着重介绍了BR和GA信号传导,植物防御和微生物毒力之间的相互作用。

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