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流产感染噬菌体防御系统:分离机制和表型。

Abortive infection antiphage defense systems: separating mechanism and phenotype.

机构信息

Shmunis School of Biomedicine and Cancer Research, Faculty of Life Sciences, Tel-Aviv University, Tel-Aviv, 69978, Israel.

Shmunis School of Biomedicine and Cancer Research, Faculty of Life Sciences, Tel-Aviv University, Tel-Aviv, 69978, Israel.

出版信息

Trends Microbiol. 2023 Oct;31(10):1003-1012. doi: 10.1016/j.tim.2023.05.002. Epub 2023 May 31.

Abstract

Bacteria have evolved a wide array of mechanisms that allow them to eliminate phage infection. 'Abortive infection' (abi) systems are an expanding category of such mechanisms, defined as those which induce programmed cell death (or dormancy) upon infection, and thus halt phage propagation within a bacterial population. This definition entails two requirements - a phenotypic observation (cell death upon infection), and a mechanistic determination of its sources (system-induced death). The phenotypic and mechanistic aspects of abi are often implicitly assumed to be tightly linked, and studies regularly tend to establish one and deduce the other. However, recent evidence points to a complicated relationship between the mechanism of defense and the phenotype observed upon infection. We argue that rather than viewing the abi phenotype as an inherent quality of a set of defense systems, it should be more appropriately thought of as an attribute of interactions between specific phages and bacteria under given conditions. Consequently, we also point to potential pitfalls in the prevailing methods for ascertaining the abi phenotype. Overall, we propose an alternative framework for parsing interactions between attacking phages and defending bacteria.

摘要

细菌已经进化出了各种各样的机制,使它们能够消除噬菌体的感染。“流产感染”(abi)系统是此类机制的一个不断扩大的类别,其定义为在感染时诱导程序性细胞死亡(或休眠)的机制,从而阻止噬菌体在细菌种群中传播。这一定义需要两个要求 - 表型观察(感染后细胞死亡),以及对其来源的机制确定(系统诱导的死亡)。abi 的表型和机制方面通常被认为是紧密相关的,研究通常倾向于确定一个方面并推断另一个方面。然而,最近的证据表明,防御机制和感染时观察到的表型之间存在复杂的关系。我们认为,abi 表型不应被视为一组防御系统的固有特性,而应更恰当地将其视为特定噬菌体与特定条件下的细菌之间相互作用的属性。因此,我们还指出了当前确定 abi 表型的流行方法中的潜在陷阱。总体而言,我们提出了一种替代框架,用于分析攻击噬菌体和防御细菌之间的相互作用。

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