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细菌防御捕食者的生态和进化意义。

Ecological and evolutive implications of bacterial defences against predators.

机构信息

Georg-August University Göttingen, JF Blumenbach Institute of Zoology and Anthropology, Animal Ecology, Berliner Str. 28, 37073 Göttingen, Germany.

出版信息

Environ Microbiol. 2012 Aug;14(8):1830-43. doi: 10.1111/j.1462-2920.2011.02627.x. Epub 2011 Oct 31.

Abstract

Bacterial communities are often heavily consumed by microfaunal predators, such as protozoa and nematodes. Predation is an important cause of mortality and determines the structure and activity of microbial communities in both terrestrial and aquatic ecosystems, and bacteria evolved various defence mechanisms helping them to resist predation. In this review, I summarize known antipredator defence strategies and their regulation, and explore their importance for bacterial fitness in various environmental conditions, and their implications for bacterial evolution and diversification under predation pressure. I discuss how defence mechanisms affect competition and cooperation within bacterial communities. Finally I present some implications of bacterial defence mechanisms for ecosystem services provided by microbial communities, such as nutrient cycling, virulence and the biological control of plant diseases.

摘要

细菌群落经常被微小动物捕食者大量消耗,如原生动物和线虫。捕食是导致死亡的一个重要原因,它决定了陆地和水生生态系统中微生物群落的结构和活性,细菌进化出了各种防御机制来帮助它们抵抗捕食。在这篇综述中,我总结了已知的抗捕食防御策略及其调控,并探讨了它们在各种环境条件下对细菌适应性的重要性,以及它们在捕食压力下对细菌进化和多样化的影响。我讨论了防御机制如何影响细菌群落内部的竞争与合作。最后,我介绍了细菌防御机制对微生物群落提供的生态系统服务的一些影响,如养分循环、毒力和植物病害的生物防治。

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