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探究微生物群落对环境变化的生态进化响应。

Investigating the eco-evolutionary response of microbiomes to environmental change.

作者信息

Martiny Jennifer B H, Martiny Adam C, Brodie Eoin, Chase Alexander B, Rodríguez-Verdugo Alejandra, Treseder Kathleen K, Allison Steven D

机构信息

Department of Ecology and Evolutionary Biology, University of California, Irvine, California, USA.

Department of Earth System Science, University of California, Irvine, California, USA.

出版信息

Ecol Lett. 2023 Sep;26 Suppl 1:S81-S90. doi: 10.1111/ele.14209. Epub 2023 Mar 25.

Abstract

Microorganisms are the primary engines of biogeochemical processes and foundational to the provisioning of ecosystem services to human society. Free-living microbial communities (microbiomes) and their functioning are now known to be highly sensitive to environmental change. Given microorganisms' capacity for rapid evolution, evolutionary processes could play a role in this response. Currently, however, few models of biogeochemical processes explicitly consider how microbial evolution will affect biogeochemical responses to environmental change. Here, we propose a conceptual framework for explicitly integrating evolution into microbiome-functioning relationships. We consider how microbiomes respond simultaneously to environmental change via four interrelated processes that affect overall microbiome functioning (physiological acclimation, demography, dispersal and evolution). Recent evidence in both the laboratory and the field suggests that ecological and evolutionary dynamics occur simultaneously within microbiomes; however, the implications for biogeochemistry under environmental change will depend on the timescales over which these processes contribute to a microbiome's response. Over the long term, evolution may play an increasingly important role for microbially driven biogeochemical responses to environmental change, particularly to conditions without recent historical precedent.

摘要

微生物是生物地球化学过程的主要驱动力,也是为人类社会提供生态系统服务的基础。现在已知自由生活的微生物群落(微生物组)及其功能对环境变化高度敏感。鉴于微生物具有快速进化的能力,进化过程可能在这种响应中发挥作用。然而,目前很少有生物地球化学过程模型明确考虑微生物进化将如何影响生物地球化学对环境变化的响应。在此,我们提出一个概念框架,用于将进化明确整合到微生物组功能关系中。我们考虑微生物组如何通过影响整体微生物组功能的四个相互关联的过程(生理适应、种群统计学、扩散和进化)同时对环境变化做出响应。实验室和实地的最新证据表明,生态和进化动态在微生物组中同时发生;然而,环境变化下对生物地球化学的影响将取决于这些过程对微生物组响应做出贡献的时间尺度。从长期来看,进化可能在微生物驱动的生物地球化学对环境变化的响应中发挥越来越重要的作用,特别是对那些没有近期历史先例的条件。

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