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合成肠道细菌群落的体外相互作用网络。

In vitro interaction network of a synthetic gut bacterial community.

机构信息

Max von Pettenkofer Institute of Hygiene and Medical Microbiology, Faculty of Medicine, LMU, Munich, Germany.

Bavarian Center for Biomolecular Mass Spectrometry, TU Munich, Freising, Germany.

出版信息

ISME J. 2022 Apr;16(4):1095-1109. doi: 10.1038/s41396-021-01153-z. Epub 2021 Dec 2.

Abstract

A key challenge in microbiome research is to predict the functionality of microbial communities based on community membership and (meta)-genomic data. As central microbiota functions are determined by bacterial community networks, it is important to gain insight into the principles that govern bacteria-bacteria interactions. Here, we focused on the growth and metabolic interactions of the Oligo-Mouse-Microbiota (OMM) synthetic bacterial community, which is increasingly used as a model system in gut microbiome research. Using a bottom-up approach, we uncovered the directionality of strain-strain interactions in mono- and pairwise co-culture experiments as well as in community batch culture. Metabolic network reconstruction in combination with metabolomics analysis of bacterial culture supernatants provided insights into the metabolic potential and activity of the individual community members. Thereby, we could show that the OMM interaction network is shaped by both exploitative and interference competition in vitro in nutrient-rich culture media and demonstrate how community structure can be shifted by changing the nutritional environment. In particular, Enterococcus faecalis KB1 was identified as an important driver of community composition by affecting the abundance of several other consortium members in vitro. As a result, this study gives fundamental insight into key drivers and mechanistic basis of the OMM interaction network in vitro, which serves as a knowledge base for future mechanistic in vivo studies.

摘要

在微生物组研究中,一个关键的挑战是基于群落组成和(宏)基因组数据来预测微生物群落的功能。由于核心微生物群落功能是由细菌群落网络决定的,因此深入了解控制细菌-细菌相互作用的原则非常重要。在这里,我们专注于寡聚小鼠微生物群(OMM)合成细菌群落的生长和代谢相互作用,该群落越来越多地被用作肠道微生物组研究的模型系统。使用自下而上的方法,我们在单培养和成对共培养实验以及群落批量培养中揭示了菌株-菌株相互作用的方向性。代谢网络重建结合细菌培养上清液的代谢组学分析提供了对个体群落成员代谢潜力和活性的深入了解。由此,我们可以表明,在营养丰富的培养基中,OMM 相互作用网络是由体外的掠夺性和干扰竞争形成的,并展示了如何通过改变营养环境来改变群落结构。特别是,粪肠球菌 KB1 通过影响体外其他几个 consortium 成员的丰度,被确定为群落组成的重要驱动因素。因此,这项研究为 OMM 体外相互作用网络的关键驱动因素和机制基础提供了基本的见解,为未来的体内机制研究提供了知识库。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d51b/8941000/7df233d17c0e/41396_2021_1153_Fig1_HTML.jpg

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