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超越生态和进化理论视野的微生物组。

The microbiome beyond the horizon of ecological and evolutionary theory.

机构信息

Department of Integrative Biology, University of California, Berkeley, CA, 94720, USA.

The Gut Health and Food Safety Programme, Quadram Institute Bioscience, Norwich Research Park, Norwich, NR4 7UA, UK.

出版信息

Nat Ecol Evol. 2017 Nov;1(11):1606-1615. doi: 10.1038/s41559-017-0340-2. Epub 2017 Oct 16.

Abstract

The ecological and evolutionary study of community formation, diversity, and stability is rooted in general theory and reinforced by decades of system-specific empirical work. Deploying these ideas to study the assembly, complexity, and dynamics of microbial communities living in and on eukaryotes has proved seductive, but challenging. The success of this research endeavour depends on our capacity to observe and characterize the distributions, abundances, and functional traits of microbiota, representing an array of technical and analytical challenges. Furthermore, a number of unique characteristics of microbial species, such as horizontal gene transfer, the production of public goods, toxin and antibiotic production, rapid evolution, and feedbacks between the microbiome and its host, are not easily accommodated by current ecological and evolutionary theory. Here we highlight potential pitfalls in the application of existing theoretical tools without careful consideration of the unique complexities of the microbiome, focusing particularly on the issue of human health, and anchoring our discussion in existing empirical evidence.

摘要

群落形成、多样性和稳定性的生态和进化研究根植于一般理论,并通过数十年的系统特异性实证工作得到加强。将这些想法应用于研究生活在真核生物体内和表面的微生物群落的组装、复杂性和动态,这既具有吸引力,也极具挑战性。这项研究工作的成功取决于我们观察和描述微生物群落的分布、丰度和功能特征的能力,这代表了一系列技术和分析方面的挑战。此外,微生物物种的一些独特特征,如水平基因转移、公共物品的产生、毒素和抗生素的产生、快速进化以及微生物组与其宿主之间的反馈,都不容易被当前的生态和进化理论所容纳。在这里,我们强调了在没有仔细考虑微生物组独特复杂性的情况下应用现有理论工具的潜在陷阱,特别关注人类健康问题,并以现有实证证据为讨论基础。

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