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如果事情如此简单就好了:多种特征之间的相互作用破坏了基于经典单一特征的微生物群落功能和进化的预测。

Would that it were so simple: Interactions between multiple traits undermine classical single-trait-based predictions of microbial community function and evolution.

机构信息

Biosciences and Living Systems Institute, University of Exeter, Exeter, UK.

Malopolska Centre of Biotechnology, Jagiellonian University, Krakow, Poland.

出版信息

Ecol Lett. 2021 Dec;24(12):2775-2795. doi: 10.1111/ele.13861. Epub 2021 Aug 27.

DOI:10.1111/ele.13861
PMID:34453399
Abstract

Understanding how microbial traits affect the evolution and functioning of microbial communities is fundamental for improving the management of harmful microorganisms, while promoting those that are beneficial. Decades of evolutionary ecology research has focused on examining microbial cooperation, diversity, productivity and virulence but with one crucial limitation. The traits under consideration, such as public good production and resistance to antibiotics or predation, are often assumed to act in isolation. Yet, in reality, multiple traits frequently interact, which can lead to unexpected and undesired outcomes for the health of macroorganisms and ecosystem functioning. This is because many predictions generated in a single-trait context aimed at promoting diversity, reducing virulence or controlling antibiotic resistance can fail for systems where multiple traits interact. Here, we provide a much needed discussion and synthesis of the most recent research to reveal the widespread and diverse nature of multi-trait interactions and their consequences for predicting and controlling microbial community dynamics. Importantly, we argue that synthetic microbial communities and multi-trait mathematical models are powerful tools for managing the beneficial and detrimental impacts of microbial communities, such that past mistakes, like those made regarding the stewardship of antimicrobials, are not repeated.

摘要

理解微生物特征如何影响微生物群落的进化和功能,对于改善有害微生物的管理、同时促进有益微生物的发展至关重要。几十年来,进化生态学研究一直专注于研究微生物的合作、多样性、生产力和毒性,但存在一个关键的局限性。所考虑的特征,如公共利益的产生以及对抗生素或捕食的抗性,通常被假定是孤立作用的。然而,实际上,多种特征经常相互作用,这可能会对大型生物的健康和生态系统功能产生意想不到和不良的后果。这是因为,在旨在促进多样性、降低毒性或控制抗生素耐药性的单一特征背景下产生的许多预测,对于存在多种特征相互作用的系统来说可能会失效。在这里,我们提供了对最新研究的急需的讨论和综合,以揭示多特征相互作用的广泛和多样性质及其对预测和控制微生物群落动态的影响。重要的是,我们认为合成微生物群落和多特征数学模型是管理微生物群落有益和有害影响的有力工具,以避免重蹈过去的错误,例如在管理抗生素方面的错误。

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Would that it were so simple: Interactions between multiple traits undermine classical single-trait-based predictions of microbial community function and evolution.如果事情如此简单就好了:多种特征之间的相互作用破坏了基于经典单一特征的微生物群落功能和进化的预测。
Ecol Lett. 2021 Dec;24(12):2775-2795. doi: 10.1111/ele.13861. Epub 2021 Aug 27.
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