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The microbiota conditions a gut milieu that selects for wild-type Salmonella Typhimurium virulence

毒力 生物 微生物学 病菌 突变体 殖民抵抗 致病岛 肠道菌群 沙门氏菌 殖民地化 表型 野生型 细菌 遗传学 基因 免疫学
作者
Ersin Gül,Erik Bakkeren,Guillem Salazar,Yves Steiger,Abdelgayed M. Younes,Melanie Clerc,Philipp Christen,Stefan A. Fattinger,Bidong D. Nguyen,Patrick Kiefer,Emma Slack,Markus Arnoldini,Julia A. Vorholt,Shinichi Sunagawa,Médéric Diard,Wolf‐Dietrich Hardt
出处
期刊:PLOS Biology [Public Library of Science]
卷期号:21 (8): e3002253-e3002253
标识
DOI:10.1371/journal.pbio.3002253
摘要

Salmonella Typhimurium elicits gut inflammation by the costly expression of HilD-controlled virulence factors. This inflammation alleviates colonization resistance (CR) mediated by the microbiota and thereby promotes pathogen blooms. However, the inflamed gut-milieu can also select for hilD mutants, which cannot elicit or maintain inflammation, therefore causing a loss of the pathogen’s virulence. This raises the question of which conditions support the maintenance of virulence in S . Typhimurium. Indeed, it remains unclear why the wild-type hilD allele is dominant among natural isolates. Here, we show that microbiota transfer from uninfected or recovered hosts leads to rapid clearance of hilD mutants that feature attenuated virulence, and thereby contributes to the preservation of the virulent S . Typhimurium genotype. Using mouse models featuring a range of microbiota compositions and antibiotic- or inflammation-inflicted microbiota disruptions, we found that irreversible disruption of the microbiota leads to the accumulation of hilD mutants. In contrast, in models with a transient microbiota disruption, selection for hilD mutants was prevented by the regrowing microbiota community dominated by Lachnospirales and Oscillospirales. Strikingly, even after an irreversible microbiota disruption, microbiota transfer from uninfected donors prevented the rise of hilD mutants. Our results establish that robust S . Typhimurium gut colonization hinges on optimizing its manipulation of the host: A transient and tempered microbiota perturbation is favorable for the pathogen to both flourish in the inflamed gut and also minimize loss of virulence. Moreover, besides conferring CR, the microbiota may have the additional consequence of maintaining costly enteropathogen virulence mechanisms.

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