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小鼠肠道细菌集(miBC)为研究肠道微生物群的培养多样性和功能潜力提供了宿主特异性的见解。

The Mouse Intestinal Bacterial Collection (miBC) provides host-specific insight into cultured diversity and functional potential of the gut microbiota.

机构信息

ZIEL Institute for Food and Health, Core Facility NGS/Microbiome, Technical University of Munich, 85354 Freising, Germany.

Leibniz-Institute DSMZ - German Collection of Microorganisms and Cell Cultures, 38124 Braunschweig, Germany.

出版信息

Nat Microbiol. 2016 Aug 8;1(10):16131. doi: 10.1038/nmicrobiol.2016.131.

Abstract

Intestinal bacteria influence mammalian physiology, but many types of bacteria are still uncharacterized. Moreover, reference strains of mouse gut bacteria are not easily available, although mouse models are extensively used in medical research. These are major limitations for the investigation of intestinal microbiomes and their interactions with diet and host. It is thus important to study in detail the diversity and functions of gut microbiota members, including those colonizing the mouse intestine. To address these issues, we aimed at establishing the Mouse Intestinal Bacterial Collection (miBC), a public repository of bacterial strains and associated genomes from the mouse gut, and studied host-specificity of colonization and sequence-based relevance of the resource. The collection includes several strains representing novel species, genera and even one family. Genomic analyses showed that certain species are specific to the mouse intestine and that a minimal consortium of 18 strains covered 50-75% of the known functional potential of metagenomes. The present work will sustain future research on microbiota-host interactions in health and disease, as it will facilitate targeted colonization and molecular studies. The resource is available at www.dsmz.de/miBC.

摘要

肠道细菌会影响哺乳动物的生理机能,但仍有许多类型的细菌尚未被描述。此外,尽管在医学研究中广泛使用小鼠模型,但鼠肠道细菌的参考菌株不容易获得。这是研究肠道微生物组及其与饮食和宿主相互作用的主要限制因素。因此,详细研究肠道微生物群成员的多样性和功能非常重要,包括定植在小鼠肠道中的成员。为了解决这些问题,我们旨在建立小鼠肠道细菌收藏库(miBC),这是一个公共细菌菌株和来自鼠肠道相关基因组的存储库,并研究了定植的宿主特异性和基于序列的资源相关性。该收藏库包括代表新物种、属,甚至一个科的几种菌株。基因组分析表明,某些物种是鼠肠道特有的,而一个由 18 株组成的最小共生体涵盖了 50-75%的已知宏基因组的功能潜力。本工作将支持未来在健康和疾病中对微生物组-宿主相互作用的研究,因为它将促进靶向定植和分子研究。该资源可在 www.dsmz.de/miBC 获得。

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