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Adaptive immunity increases the pace and predictability of evolutionary change in commensal gut bacteria

机译:适应性免疫提高了共生肠道细菌进化变化的速度和可预测性

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摘要

Co-evolution between the mammalian immune system and the gut microbiota is believed to have shaped the microbiota's astonishing diversity. Here we test the corollary hypothesis that the adaptive immune system, directly or indirectly, influences the evolution of commensal species. We compare the evolution of Escherichia coli upon colonization of the gut of wild-type and Rag2(-/-) mice, which lack lymphocytes. We show that bacterial adaptation is slower in immune-compromised animals, a phenomenon explained by differences in the action of natural selection within each host. Emerging mutations exhibit strong beneficial effects in healthy hosts but substantial antagonistic pleiotropy in immune-deficient mice. This feature is due to changes in the composition of the gut microbiota, which differs according to the immune status of the host. Our results indicate that the adaptive immune system influences the tempo and predictability of E. coli adaptation to the mouse gut.
机译:哺乳动物免疫系统和肠道菌群之间的共同进化被认为已经塑造了菌群的惊人多样性。在这里,我们检验了推论假设,即自适应免疫系统直接或间接影响共生物种的进化。我们比较大肠菌的野生型和缺乏淋巴细胞的Rag2(-/-)小鼠肠道定植后的演变。我们表明,细菌的适应在免疫受损的动物中较慢,这是由每个宿主内自然选择作用的差异所解释的现象。新兴的突变在健康宿主中表现出强大的有益作用,但在免疫缺陷小鼠中却具有明显的拮抗多效性。此功能是由于肠道菌群组成的变化而引起的,根据宿主的免疫状态而有所不同。我们的结果表明,适应性免疫系统会影响大肠杆菌对小鼠肠道的适应速度和可预测性。

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