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人类肠道元群落作为精准医学发展中的一种概念辅助工具。

The human gut metacommunity as a conceptual aid in the development of precision medicine.

作者信息

Tannock Gerald W

机构信息

Department of Microbiology and Immunology, University of Otago, Dunedin, New Zealand.

出版信息

Front Microbiol. 2024 Oct 10;15:1469543. doi: 10.3389/fmicb.2024.1469543. eCollection 2024.

Abstract

Human gut microbiomes (microbiotas) are highly individualistic in taxonomic composition but nevertheless are functionally similar. Thus, collectively, they comprise a "metacommunity." In ecological terminology, the assembly of human gut microbiomes is influenced by four processes: selection, speciation, drift, and dispersal. As a result of fortuitous events associated with these processes, individual microbiomes are taxonomically "tailor-made" for each host. However, functionally they are "off-the-shelf" because of similar functional outputs resulting from metabolic redundancy developed in host-microbe symbiosis. Because of this, future microbiological and molecular studies of microbiomes should emphasize the metabolic interplay that drives the human gut metacommunity and that results in these similar functional outputs. This knowledge will support the development of remedies for specific functional dysbioses and hence provide practical examples of precision medicine.

摘要

人类肠道微生物群落在分类组成上高度个体化,但在功能上却相似。因此,它们共同构成一个“元群落”。在生态学用语中,人类肠道微生物群落的组装受四个过程影响:选择、物种形成、漂变和扩散。由于与这些过程相关的偶然事件,个体微生物群落从分类学上说是为每个宿主“量身定制”的。然而,由于宿主 - 微生物共生中产生的代谢冗余导致功能输出相似,所以在功能上它们是“现成可用”的。正因如此,未来对微生物群落的微生物学和分子研究应强调驱动人类肠道元群落并导致这些相似功能输出的代谢相互作用。这一知识将支持针对特定功能失调开发治疗方法,从而提供精准医学的实际范例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07e7/11503762/e71a04cfcab3/fmicb-15-1469543-g001.jpg

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