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水中弧菌噬菌体与其宿主的相互作用。

Interactions of Vibrio phages and their hosts in aquatic environments.

机构信息

Stuart B. Levy Center for Integrated Management of Antimicrobial Resistance (Levy CIMAR), Tufts Medical Center and Tufts University, Boston, MA, USA.

Microbes Lab SpA, Valdivia, Los Ríos 5111038, Chile.

出版信息

Curr Opin Microbiol. 2023 Aug;74:102308. doi: 10.1016/j.mib.2023.102308. Epub 2023 Apr 14.

Abstract

Bacteriophages (phages) are viruses that specifically infect bacteria. These viruses were discovered a century ago and have been used as a model system in microbial genetics and molecular biology. In order to survive, bacteria have to quickly adapt to phage challenges in their natural settings. In turn, phages continuously develop/evolve mechanisms for battling host defenses. A deeper understanding of the arms race between bacteria and phages is essential for the rational design of phage-based prophylaxis and therapies to prevent and treat bacterial infections. Vibrio species and their phages (vibriophages) are a suitable model to study these interactions. Phages are highly ubiquitous in aquatic environments and Vibrio are waterborne bacteria that must survive the constant attack by phages for successful transmission to their hosts. Here, we review relevant literature from the past two years to delve into the molecular interactions of Vibrio species and their phages in aquatic niches.

摘要

噬菌体(phages)是专门感染细菌的病毒。这些病毒在一个世纪前被发现,已被用作微生物遗传学和分子生物学的模型系统。为了生存,细菌必须在其自然环境中迅速适应噬菌体的挑战。反过来,噬菌体不断发展/进化对抗宿主防御的机制。深入了解细菌和噬菌体之间的军备竞赛对于基于噬菌体的预防和治疗策略的合理设计至关重要,这些策略旨在预防和治疗细菌感染。弧菌属及其噬菌体(vibriophages)是研究这些相互作用的合适模型。噬菌体在水生环境中高度普遍存在,而弧菌是水生细菌,必须在噬菌体的持续攻击下生存下来,才能成功地将其传播给宿主。在这里,我们回顾了过去两年的相关文献,深入研究了水生环境中弧菌属及其噬菌体的分子相互作用。

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