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不止于言语:植物整体共生体相互作用背后的化学。

More than words: the chemistry behind the interactions in the plant holobiont.

机构信息

Instituto de Hortofruticultura Subtropical y Mediterránea "La Mayora", Universidad de Málaga-Consejo Superior de Investigaciones Científicas (IHSM-UMA-CSIC), Departamento de Microbiología, Universidad de Málaga, Bulevar Louis Pasteur 31 (Campus Universitario de Teatinos), Málaga, 29071, Spain.

出版信息

Environ Microbiol. 2020 Nov;22(11):4532-4544. doi: 10.1111/1462-2920.15197. Epub 2020 Sep 13.

Abstract

Plants and microbes have evolved sophisticated ways to communicate and coexist. The simplest interactions that occur in plant-associated habitats, i.e., those involved in disease detection, depend on the production of microbial pathogenic and virulence factors and the host's evolved immunological response. In contrast, microbes can also be beneficial for their host plants in a number of ways, including fighting pathogens and promoting plant growth. In order to clarify the mechanisms directly involved in these various plant-microbe interactions, we must still deepen our understanding of how these interkingdom communication systems, which are constantly modulated by resident microbial activity, are established and, most importantly, how their effects can span physically separated plant compartments. Efforts in this direction have revealed a complex and interconnected network of molecules and associated metabolic pathways that modulate plant-microbe and microbe-microbe communication pathways to regulate diverse ecological responses. Once sufficiently understood, these pathways will be biotechnologically exploitable, for example, in the use of beneficial microbes in sustainable agriculture. The aim of this review is to present the latest findings on the dazzlingly diverse arsenal of molecules that efficiently mediate specific microbe-microbe and microbe-plant communication pathways during plant development and on different plant organs.

摘要

植物和微生物已经进化出了复杂的交流和共存方式。在植物相关栖息地中发生的最简单的相互作用,即涉及疾病检测的相互作用,取决于微生物的致病性和毒力因子的产生以及宿主进化的免疫反应。相比之下,微生物也可以通过多种方式对其宿主植物有益,包括对抗病原体和促进植物生长。为了阐明这些各种植物-微生物相互作用中直接涉及的机制,我们还必须加深对这些跨界交流系统的理解,这些系统不断受到常驻微生物活动的调节,以及它们的作用如何跨越物理上分离的植物区室。朝着这个方向的努力揭示了一个复杂而相互关联的分子网络和相关代谢途径,这些分子和途径调节植物-微生物和微生物-微生物的通讯途径,以调节多样化的生态反应。一旦得到充分理解,这些途径将在生物技术上具有可利用性,例如在可持续农业中利用有益微生物。本文的目的是介绍最新的发现,这些发现涉及在植物发育过程中以及在不同植物器官中有效介导特定微生物-微生物和微生物-植物通讯途径的令人眼花缭乱的多样化分子武器库。

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