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微生物群落对生态系统和多种干扰的恢复力。

Microbial Community Resilience across Ecosystems and Multiple Disturbances.

机构信息

Université Bourgogne Franche-Comté, INRAE, AgroSup Dijon, Agroécologie, Dijon, France

SRUC, Department of Agriculture, Horticulture and Engineering Sciences, Edinburgh, United Kingdom.

出版信息

Microbiol Mol Biol Rev. 2021 Mar 31;85(2). doi: 10.1128/MMBR.00026-20. Print 2021 May 19.

Abstract

The ability of ecosystems to withstand disturbances and maintain their functions is being increasingly tested as rates of change intensify due to climate change and other human activities. Microorganisms are crucial players underpinning ecosystem functions, and the recovery of microbial communities from disturbances is therefore a key part of the complex processes determining the fate of ecosystem functioning. However, despite global environmental change consisting of numerous pressures, it is unclear and controversial how multiple disturbances affect microbial community stability and what consequences this has for ecosystem functions. This is particularly the case for those multiple or compounded disturbances that occur more frequently than the normal recovery time. The aim of this review is to provide an overview of the mechanisms that can govern the responses of microbes to multiple disturbances across aquatic and terrestrial ecosystems. We first summarize and discuss properties and mechanisms that influence resilience in aquatic and soil biomes to determine whether there are generally applicable principles. Following, we focus on interactions resulting from inherent characteristics of compounded disturbances, such as the nature of the disturbance, timing, and chronology that can lead to complex and nonadditive effects that are modulating the response of microorganisms.

摘要

由于气候变化和其他人类活动导致变化速度加快,生态系统承受干扰和维持其功能的能力正受到越来越多的考验。微生物是支撑生态系统功能的关键参与者,因此,从干扰中恢复微生物群落是决定生态系统功能命运的复杂过程的关键部分。然而,尽管全球环境变化包含许多压力,但多个干扰如何影响微生物群落稳定性以及这对生态系统功能有何后果仍不清楚且存在争议。对于那些比正常恢复时间更频繁发生的多次或复合干扰尤其如此。本综述的目的是概述可以控制微生物对水生和陆地生态系统中多种干扰的反应的机制。我们首先总结和讨论了影响水生和土壤生物群系恢复力的特性和机制,以确定是否存在普遍适用的原则。其次,我们关注由复合干扰的固有特性引起的相互作用,例如干扰的性质、时间和时间顺序,这些可能导致复杂和非加性的影响,从而调节微生物的反应。

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