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植物激素信号传导在调节植物与病毒相互作用中的多种作用。

Diverse roles of phytohormonal signaling in modulating plant-virus interactions.

作者信息

Sharma Shambhavi, Prasad Manoj

机构信息

National Institute of Plant Genome Research, New Delhi, India.

Department of Genetics, University of Delhi South Campus, New Delhi, India.

出版信息

J Exp Bot. 2025 May 10;76(7):1921-1940. doi: 10.1093/jxb/erae468.

Abstract

Virus infection brings about changes in the transcriptome, proteome, and metabolome status of the infected plant, wherein substantial alterations in the abundance of phytohormones and associated components involved in their signaling pathways have been observed. In recent years, extensive research in the field of plant virology has showcased the indisputable significance of phytohormone signaling during plant-virus interactions. Apart from acting as growth regulators, phytohormones elicit a robust immune response, which restricts viral multiplication within the plant and propagation by vectors. Interestingly, these pathways have been shown to act not only as isolated mechanisms but also as complex intertwined regulatory cascades where the crosstalk among different phytohormones and with other antiviral pathways takes place during plant-virus interaction. Viruses disrupt phytohormone homeostasis via their multifunctional effectors, which seems to be a 'smart' approach adopted by viruses to circumvent phytohormone-mediated plant immune responses. In this review, we summarize current understanding of role of phytohormone signaling pathways during plant-virus interactions in activating plant antiviral immune responses and how viruses exploit these signaling pathways to favor their pathogenesis.

摘要

病毒感染会导致被感染植物的转录组、蛋白质组和代谢组状态发生变化,其中已观察到植物激素及其信号通路中相关成分的丰度发生了显著改变。近年来,植物病毒学领域的广泛研究表明了植物激素信号在植物与病毒相互作用过程中的重要意义。除了作为生长调节剂外,植物激素还能引发强大的免疫反应,限制病毒在植物体内的繁殖以及通过载体传播。有趣的是,这些信号通路不仅作为独立机制发挥作用,还作为复杂的相互交织的调控级联发挥作用,在植物与病毒相互作用期间,不同植物激素之间以及与其他抗病毒通路之间会发生相互作用。病毒通过其多功能效应器破坏植物激素稳态,这似乎是病毒规避植物激素介导的植物免疫反应所采用的一种“聪明”方法。在本综述中,我们总结了目前对植物激素信号通路在植物与病毒相互作用过程中激活植物抗病毒免疫反应的作用以及病毒如何利用这些信号通路促进其发病机制的理解。

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