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对抗噬菌体:对比大肠杆菌中基于利他主义与个体的抗性机制

Defying bacteriophages: Contrasting altruistic with individual-based resistance mechanisms in Escherichia coli.

作者信息

Refardt Dominik, Kümmerli Rolf

机构信息

Institute of Integrative Biology; Department of Environmental Systems Science; Swiss Federal Institute of Technology; Zürich, Switzerland.

出版信息

Commun Integr Biol. 2013 Sep 1;6(5):e25159. doi: 10.4161/cib.25159. Epub 2013 Jun 4.

Abstract

Adaptations by hosts in response to parasitism are generally believed to reduce the susceptibility of the adapted individual. However, recent work on Escherichia coli showed that bacteria can fight deadly phage attacks by committing altruistic suicide upon infection, in order to prevent parasite transmission to nearby relatives. Here, we compare the efficiency of suicidal host defense with individual-based resistance. We show that in unstructured environments suicidal host defense is futile since suicide cannot preferentially protect relatives, whereas individual-based resistance is highly efficient in defying phages. In contrast, we found that in structured environments suicidal host defense and individual-based resistance were both efficient in withstanding phages, with the latter type performing slightly better. We propose that the putative lower efficiency of suicidal host defense might be compensated by the fact that suicidal systems usually do not bear pleiotropic costs of resistance, as it is usually the case for individual-based resistance mechanisms.

摘要

宿主针对寄生现象所做出的适应性改变通常被认为会降低适应个体的易感性。然而,最近关于大肠杆菌的研究表明,细菌在受到感染时会通过利他性自杀来对抗致命的噬菌体攻击,以防止寄生虫传播给附近的亲属。在此,我们将自杀性宿主防御的效率与基于个体的抗性进行比较。我们发现,在非结构化环境中,自杀性宿主防御是徒劳的,因为自杀无法优先保护亲属,而基于个体的抗性在抵御噬菌体方面效率极高。相反,我们发现在结构化环境中,自杀性宿主防御和基于个体的抗性在抵御噬菌体方面都很有效,后者表现略好。我们提出,自杀性宿主防御假定的较低效率可能会被这样一个事实所弥补,即自杀系统通常不会像基于个体的抗性机制那样承担抗性的多效性成本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c29/3829904/68923c3381aa/cib-6-e25159-g1.jpg

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