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在相同的人工饲养条件下,两种密切相关的家鼠亚种下肠道微生物菌群存在差异。

Divergent gut microbiota in two closely related house mouse subspecies under common garden conditions.

机构信息

Department of Zoology, Faculty of Science, Charles University, Prague, Czech Republic.

Studenec Research Facility, Institute of Vertebrate Biology, Czech Academy of Sciences, Brno, Czech Republic.

出版信息

FEMS Microbiol Ecol. 2022 Aug 16;98(8). doi: 10.1093/femsec/fiac078.

Abstract

The gastrointestinal microbiota (GM) is considered an important component of the vertebrate holobiont. GM-host interactions influence the fitness of holobionts and are, therefore, an integral part of evolution. The house mouse is a prominent model for GM-host interactions, and evidence suggests a role for GM in mouse speciation. However, previous studies based on short 16S rRNA GM profiles of wild house mouse subspecies failed to detect GM divergence, which is a prerequisite for the inclusion of GM in Dobzhansky-Muller incompatibilities. Here, we used standard 16S rRNA GM profiling in two mouse subspecies, Mus musculus musculus and M. m. domesticus, including the intestinal mucosa and content of three gut sections (ileum, caecum, and colon). We reduced environmental variability by sampling GM in the offspring of wild mice bred under seminatural conditions. Although the breeding conditions allowed a contact between the subspecies, we found a clear differentiation of GM between them, in all three gut sections. Differentiation was mainly driven by several Helicobacters and two H. ganmani variants showed a signal of codivergence with their hosts. Helicobacters represent promising candidates for studying GM-host coadaptations and the fitness effects of their interactions.

摘要

肠道微生物群(GM)被认为是脊椎动物整体生物的重要组成部分。GM-宿主相互作用影响整体生物的适应性,因此是进化的一个组成部分。家鼠是 GM-宿主相互作用的重要模型,有证据表明 GM 在鼠种形成中起作用。然而,以前基于野生家鼠亚种的短 16S rRNA GM 图谱的研究未能检测到 GM 的分化,而 GM 的分化是将 GM 纳入 Dobzhansky-Muller 不相容性的前提。在这里,我们使用标准的 16S rRNA GM 图谱在两个鼠亚种,Mus musculus musculus 和 M. m. domesticus 中进行了研究,包括肠黏膜和三个肠道段(回肠、盲肠和结肠)的内容物。我们通过在半自然条件下繁殖的野生鼠的后代中采样 GM,减少了环境变异性。尽管繁殖条件允许亚种之间接触,但我们发现它们在所有三个肠道段中 GM 明显分化。分化主要由几种幽门螺杆菌驱动,其中两种 H. ganmani 变体与其宿主表现出共同进化的信号。幽门螺杆菌是研究 GM-宿主协同适应和它们相互作用的适应性影响的有前途的候选者。

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