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噬菌体通过调动编码免疫系统以对抗竞争者的致病性岛屿获益。

Bacteriophages benefit from mobilizing pathogenicity islands encoding immune systems against competitors.

机构信息

MRC Centre for Molecular Bacteriology and Infection, Imperial College London, London SW7 2AZ, UK.

Institute of Infection, Immunity and Inflammation, University of Glasgow, Glasgow G12 8TA, UK; Department of Applied Microbiology and Brewing, Faculty of Natural Sciences, Enugu State University of Science and Technology, Enugu, Enugu State PMB 01660, Nigeria.

出版信息

Cell. 2022 Aug 18;185(17):3248-3262.e20. doi: 10.1016/j.cell.2022.07.014.

Abstract

Bacteria encode sophisticated anti-phage systems that are diverse and versatile and display high genetic mobility. How this variability and mobility occurs remains largely unknown. Here, we demonstrate that a widespread family of pathogenicity islands, the phage-inducible chromosomal islands (PICIs), carry an impressive arsenal of defense mechanisms, which can be disseminated intra- and inter-generically by helper phages. These defense systems provide broad immunity, blocking not only phage reproduction, but also plasmid and non-cognate PICI transfer. Our results demonstrate that phages can mobilize PICI-encoded immunity systems to use them against other mobile genetic elements, which compete with the phages for the same bacterial hosts. Therefore, despite the cost, mobilization of PICIs may be beneficial for phages, PICIs, and bacteria in nature. Our results suggest that PICIs are important players controlling horizontal gene transfer and that PICIs and phages establish mutualistic interactions that drive bacterial ecology and evolution.

摘要

细菌编码了复杂的抗噬菌体系统,这些系统具有多样性和多功能性,并表现出高度的遗传可移动性。这种可变性和可移动性是如何发生的,在很大程度上仍然未知。在这里,我们证明了广泛存在的一类致病性岛,即噬菌体诱导的染色体岛 (PICI),携带了令人印象深刻的防御机制,这些防御机制可以通过辅助噬菌体在种内和种间传播。这些防御系统提供了广泛的免疫性,不仅可以阻止噬菌体的繁殖,还可以阻止质粒和非同源 PICI 的转移。我们的结果表明,噬菌体可以动员 PICI 编码的免疫系统来对抗其他与噬菌体竞争同一细菌宿主的移动遗传元件。因此,尽管存在成本,但 PICI 的动员可能对噬菌体、PICI 和自然界中的细菌都是有益的。我们的结果表明,PICI 是控制水平基因转移的重要参与者,并且 PICI 和噬菌体建立了互利的相互作用,从而推动了细菌的生态和进化。

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