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艰难梭菌种形成过程中宿主传播周期的适应性。

Adaptation of host transmission cycle during Clostridium difficile speciation.

机构信息

Host-Microbiota Interactions Laboratory, Wellcome Sanger Institute, Hinxton, UK.

Centre for Innate Immunity and Infectious Diseases, Hudson Institute of Medical Research, Clayton, Victoria, Australia.

出版信息

Nat Genet. 2019 Sep;51(9):1315-1320. doi: 10.1038/s41588-019-0478-8. Epub 2019 Aug 12.

Abstract

Bacterial speciation is a fundamental evolutionary process characterized by diverging genotypic and phenotypic properties. However, the selective forces that affect genetic adaptations and how they relate to the biological changes that underpin the formation of a new bacterial species remain poorly understood. Here, we show that the spore-forming, healthcare-associated enteropathogen Clostridium difficile is actively undergoing speciation. Through large-scale genomic analysis of 906 strains, we demonstrate that the ongoing speciation process is linked to positive selection on core genes in the newly forming species that are involved in sporulation and the metabolism of simple dietary sugars. Functional validation shows that the new C. difficile produces spores that are more resistant and have increased sporulation and host colonization capacity when glucose or fructose is available for metabolism. Thus, we report the formation of an emerging C. difficile species, selected for metabolizing simple dietary sugars and producing high levels of resistant spores, that is adapted for healthcare-mediated transmission.

摘要

细菌物种形成是一个基本的进化过程,其特征是基因型和表型特性的分歧。然而,影响遗传适应的选择压力以及它们与形成新细菌物种的生物学变化的关系仍知之甚少。在这里,我们表明,形成孢子的、与医疗保健相关的肠道病原体艰难梭菌正在积极进行物种形成。通过对 906 株菌株进行大规模基因组分析,我们证明了正在进行的物种形成过程与新形成物种中核心基因的正选择有关,这些基因涉及孢子形成和简单膳食糖的代谢。功能验证表明,新的艰难梭菌产生的孢子在有葡萄糖或果糖可用于代谢时具有更高的抗性和增加的孢子形成和宿主定植能力。因此,我们报告了一种新兴的艰难梭菌物种的形成,该物种选择代谢简单的膳食糖并产生高水平的抗性孢子,从而适应医疗保健介导的传播。

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