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噬菌体质粒的特征及其对微生物群落的影响。

Characteristics of phage-plasmids and their impact on microbial communities.

作者信息

Sayid Ruweyda, van den Hurk Anne W M, Rothschild-Rodriguez Daniela, Herrema Hilde, de Jonge Patrick A, Nobrega Franklin L

机构信息

School of Biological Sciences, University of Southampton, Southampton, UK.

Departments of Internal and Experimental Vascular Medicine, Amsterdam UMC, Location AMC, University of Amsterdam, Amsterdam; the Netherlands.

出版信息

Essays Biochem. 2024 Dec 17;68(5):583-592. doi: 10.1042/EBC20240014.

Abstract

Bacteria host various foreign genetic elements, most notably plasmids and bacteriophages (or phages). Historically, these two classes were seen as separate, but recent research has shown considerable interplay between them. Phage-plasmids (P-Ps) exhibit characteristics of both phages and plasmids, allowing them to exist extrachromosomally within bacterial hosts as plasmids, but also to infect and lyse bacteria as phages. This dual functionality enables P-Ps to utilize the modes of transmission of both phage and plasmids, facilitating the rapid dissemination of genetic material, including antibiotic resistance and virulence genes, throughout bacterial populations. Additionally, P-Ps have been found to encode toxin-antitoxin and CRISPR-Cas adaptive immune systems, which enhance bacterial survival under stress and provide immunity against other foreign genetic elements. Despite a growing body of literature on P-Ps, large gaps remain in our understanding of their ecological roles and environmental prevalence. This review aims to synthesise existing knowledge and identify research gaps on the impacts of P-Ps on microbial communities.

摘要

细菌携带各种外源遗传元件,最显著的是质粒和噬菌体。从历史上看,这两类被视为是分开的,但最近的研究表明它们之间存在相当大的相互作用。噬菌体质粒(P-Ps)兼具噬菌体和质粒的特征,使其能够作为质粒在细菌宿主细胞内以染色体外形式存在,同时也能作为噬菌体感染并裂解细菌。这种双重功能使P-Ps能够利用噬菌体和质粒的传播方式,促进包括抗生素抗性基因和毒力基因在内的遗传物质在细菌群体中的快速传播。此外,已发现P-Ps编码毒素-抗毒素和CRISPR-Cas适应性免疫系统,这增强了细菌在压力下的生存能力,并提供针对其他外源遗传元件的免疫力。尽管关于P-Ps的文献越来越多,但我们对其生态作用和环境流行情况的了解仍存在很大差距。本综述旨在综合现有知识,并确定关于P-Ps对微生物群落影响的研究空白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8217/11652158/d1afa2fcffc1/ebc-68-ebc20240014-g1.jpg

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