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植物微生物群中细菌与细菌相互作用对植物健康和生产力的影响。

Implications of bacteria‒bacteria interactions within the plant microbiota for plant health and productivity.

作者信息

Barone Giovanni Davide, Zhou Yaqi, Wang Hongkai, Xu Sunde, Ma Zhonghua, Cernava Tomislav, Chen Yun

机构信息

Institute of Biology, University of Graz, 8010 Graz, Austria.

State Key Laboratory of Rice Biology and Breeding; Ministry of Agriculture Key Lab of Molecular Biology of Crop Pathogens and Insects; Zhejiang Provincial Key Laboratory of Biology of Crop Pathogens and Insects; Institute of Biotechnology, Zhejiang University, Hangzhou 310058, China.

出版信息

J Zhejiang Univ Sci B. 2024 May 21;25(12):1039-1054. doi: 10.1631/jzus.B2300914.

Abstract

Crop production currently relies on the widespread use of agrochemicals to ensure food security. This practice is considered unsustainable, yet has no viable alternative at present. The plant microbiota can fulfil various functions for its host, some of which could be the basis for developing sustainable protection and fertilization strategies for plants without relying on chemicals. To harness such functions, a detailed understanding of plant‒microbe and microbe‒microbe interactions is necessary. Among interactions within the plant microbiota, those between bacteria are the most common ones; they are not only of ecological importance but also essential for maintaining the health and productivity of the host plants. This review focuses on recent literature in this field and highlights various consequences of bacteria‒bacteria interactions under different agricultural settings. In addition, the molecular and genetic backgrounds of bacteria that facilitate such interactions are emphasized. Representative examples of commonly found bacterial metabolites with bioactive properties, as well as their modes of action, are given. Integrating our understanding of various binary interactions into complex models that encompass the entire microbiota will benefit future developments in agriculture and beyond, which could be further facilitated by artificial intelligence-based technologies.

摘要

目前,作物生产依赖于广泛使用农用化学品以确保粮食安全。这种做法被认为是不可持续的,但目前尚无可行的替代方案。植物微生物群可以为其宿主履行多种功能,其中一些功能可能成为在不依赖化学物质的情况下为植物制定可持续保护和施肥策略的基础。为了利用这些功能,有必要详细了解植物-微生物以及微生物-微生物之间的相互作用。在植物微生物群内部的相互作用中,细菌之间的相互作用最为常见;它们不仅具有生态重要性,而且对于维持宿主植物的健康和生产力也至关重要。本综述聚焦于该领域的最新文献,并强调了在不同农业环境下细菌-细菌相互作用的各种影响。此外,还着重介绍了促进此类相互作用的细菌的分子和遗传背景。给出了具有生物活性的常见细菌代谢产物的代表性实例及其作用方式。将我们对各种二元相互作用的理解整合到包含整个微生物群的复杂模型中,将有利于农业及其他领域的未来发展,基于人工智能的技术可以进一步推动这一进程。

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