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有益微生物诱导的系统抗性。

Induced systemic resistance by beneficial microbes.

机构信息

Plant-Microbe Interactions, Institute of Environmental Biology, Department of Biology, Faculty of Science, Utrecht University, 3508 TB Utrecht, The Netherlands; email:

出版信息

Annu Rev Phytopathol. 2014;52:347-75. doi: 10.1146/annurev-phyto-082712-102340. Epub 2014 Jun 2.

Abstract

Beneficial microbes in the microbiome of plant roots improve plant health. Induced systemic resistance (ISR) emerged as an important mechanism by which selected plant growth-promoting bacteria and fungi in the rhizosphere prime the whole plant body for enhanced defense against a broad range of pathogens and insect herbivores. A wide variety of root-associated mutualists, including Pseudomonas, Bacillus, Trichoderma, and mycorrhiza species sensitize the plant immune system for enhanced defense without directly activating costly defenses. This review focuses on molecular processes at the interface between plant roots and ISR-eliciting mutualists, and on the progress in our understanding of ISR signaling and systemic defense priming. The central role of the root-specific transcription factor MYB72 in the onset of ISR and the role of phytohormones and defense regulatory proteins in the expression of ISR in aboveground plant parts are highlighted. Finally, the ecological function of ISR-inducing microbes in the root microbiome is discussed.

摘要

植物根际微生物组中的有益微生物可以改善植物健康。诱导系统抗性 (ISR) 作为一种重要机制出现,其中选择的根际植物促生细菌和真菌可以启动整个植物体,增强对广泛的病原体和昆虫食草动物的防御能力。各种各样的与根相关的共生体,包括假单胞菌、芽孢杆菌、木霉和菌根物种,通过增强植物免疫系统来增强防御能力,而不会直接激活昂贵的防御机制。这篇综述重点介绍了植物根系与诱导 ISR 的共生体之间的界面的分子过程,以及我们对 ISR 信号转导和系统防御启动的理解进展。根特异性转录因子 MYB72 在 ISR 发生中的核心作用,以及植物激素和防御调节蛋白在地上植物部分表达 ISR 的作用,都得到了强调。最后,讨论了根际微生物组中诱导 ISR 的微生物的生态功能。

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