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土壤微生物群落的多样性和非同步性稳定了生态系统功能。

Diversity and asynchrony in soil microbial communities stabilizes ecosystem functioning.

机构信息

Department of Evolutionary Biology and Environmental Studies, University of Zürich, Zürich, Switzerland.

Plant-Soil Interactions, Research Division Agroecology and Environment, Agroscope, Zürich, Switzerland.

出版信息

Elife. 2021 Mar 23;10:e62813. doi: 10.7554/eLife.62813.

Abstract

Theoretical and empirical advances have revealed the importance of biodiversity for stabilizing ecosystem functions through time. Despite the global degradation of soils, whether the loss of soil microbial diversity can destabilize ecosystem functioning is poorly understood. Here, we experimentally quantified the contribution of soil fungal and bacterial communities to the temporal stability of four key ecosystem functions related to biogeochemical cycling. Microbial diversity enhanced the temporal stability of all ecosystem functions and this pattern was particularly strong in plant-soil mesocosms with reduced microbial richness where over 50% of microbial taxa were lost. The stabilizing effect of soil biodiversity was linked to asynchrony among microbial taxa whereby different soil fungi and bacteria promoted different ecosystem functions at different times. Our results emphasize the need to conserve soil biodiversity for the provisioning of multiple ecosystem functions that soils provide to the society.

摘要

理论和经验的进步揭示了生物多样性对于稳定生态系统功能随时间变化的重要性。尽管土壤在全球范围内退化,但土壤微生物多样性的丧失是否会使生态系统功能不稳定还知之甚少。在这里,我们通过实验量化了土壤真菌和细菌群落对与生物地球化学循环有关的四个关键生态系统功能的时间稳定性的贡献。微生物多样性增强了所有生态系统功能的时间稳定性,在微生物丰富度降低的植物-土壤中型生态系统中,这种模式更为强烈,其中超过 50%的微生物类群丢失。土壤生物多样性的稳定作用与微生物类群之间的不同步有关,不同的土壤真菌和细菌在不同时间促进不同的生态系统功能。我们的研究结果强调了保护土壤生物多样性的必要性,以提供土壤为社会提供的多种生态系统功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34f7/7987343/469d293af8de/elife-62813-fig1.jpg

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