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宿主对微生物群落组装的影响。

Host effects on microbiota community assembly.

机构信息

Institute of Integrative Biology (IBZ), ETH Zurich, Zurich, Switzerland.

出版信息

J Anim Ecol. 2018 Mar;87(2):331-340. doi: 10.1111/1365-2656.12768. Epub 2017 Nov 13.

Abstract

To what extent host-associated microbiota assembly is driven by host selection or simply by happenstance remains an open question in microbiome research. Here, we take a first step towards elucidating the relative importance of host selection on the establishing gut microbial community in an ecologically relevant organism. We presented germ-free bumblebee, Bombus terrestris, workers from 10 colonies with a "global" microbial species pool comprised of an equal mixture of the gut microbiota of all colonies. By means of 16S amplicon sequencing, we found that overall microbiota community composition was generally shifted between pool-exposed workers compared to workers that naturally acquired their gut microbiota, but that the specific composition of the established microbiota also depended on colony identity (e.g. genetic background). Because the microbiota is protective against parasite infection in this system, variation in the filtering of a beneficial microbial community can have important consequences for host resistance and eventual co-evolution with parasites.

摘要

在微生物组研究中,宿主相关微生物组的组装在多大程度上是由宿主选择驱动的,还是仅仅是偶然的,这仍然是一个悬而未决的问题。在这里,我们朝着阐明在生态相关的生物体中,宿主选择对建立肠道微生物群落的相对重要性迈出了第一步。我们向 10 个殖民地的无菌熊蜂,Bombus terrestris,工蜂提供了一个“全球”微生物物种库,其中包含所有殖民地肠道微生物群的均等混合物。通过 16S 扩增子测序,我们发现与自然获得肠道微生物群的工蜂相比,暴露于菌群库中的工蜂的总体微生物群落组成通常发生了变化,但已建立的微生物群落的具体组成也取决于殖民地的身份(例如遗传背景)。由于在这个系统中,微生物群对寄生虫感染具有保护作用,因此有益微生物群落的过滤变化可能对宿主的抵抗力和与寄生虫的最终共同进化产生重要影响。

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