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生物同质化通过减少空间不同步来破坏生态系统功能。

Biotic homogenization destabilizes ecosystem functioning by decreasing spatial asynchrony.

机构信息

Key Laboratory for Earth Surface Processes of the Ministry of Education, Institute of Ecology, College of Urban and Environmental Sciences, Peking University, Beijing, 100871, China.

Centre for Biodiversity Theory and Modelling, Theoretical and Experimental Ecology Station, CNRS and Paul Sabatier University, Moulis, 09200, France.

出版信息

Ecology. 2021 Jun;102(6):e03332. doi: 10.1002/ecy.3332. Epub 2021 Apr 30.

Abstract

Our planet is facing significant changes of biodiversity across spatial scales. Although the negative effects of local biodiversity (α diversity) loss on ecosystem stability are well documented, the consequences of biodiversity changes at larger spatial scales, in particular biotic homogenization, that is, reduced species turnover across space (β diversity), remain poorly known. Using data from 39 grassland biodiversity experiments, we examine the effects of β diversity on the stability of simulated landscapes while controlling for potentially confounding biotic and abiotic factors. Our results show that higher β diversity generates more asynchronous dynamics among local communities and thereby contributes to the stability of ecosystem productivity at larger spatial scales. We further quantify the relative contributions of α and β diversity to ecosystem stability and find a relatively stronger effect of α diversity, possibly due to the limited spatial scale of our experiments. The stabilizing effects of both α and β diversity lead to a positive diversity-stability relationship at the landscape scale. Our findings demonstrate the destabilizing effect of biotic homogenization and suggest that biodiversity should be conserved at multiple spatial scales to maintain the stability of ecosystem functions and services.

摘要

我们的星球正面临着生物多样性在空间尺度上的重大变化。尽管局部生物多样性(α多样性)丧失对生态系统稳定性的负面影响已有充分记录,但在更大的空间尺度上,特别是生物同质化(即空间上物种更替减少,β多样性)的生物多样性变化的后果仍然知之甚少。利用来自 39 个草原生物多样性实验的数据,我们在控制潜在混杂的生物和非生物因素的情况下,检验了β多样性对模拟景观稳定性的影响。我们的研究结果表明,较高的β多样性在局部群落之间产生了更多的异步动态,从而有助于较大空间尺度上生态系统生产力的稳定性。我们进一步量化了α和β多样性对生态系统稳定性的相对贡献,发现α多样性的影响相对更强,这可能是由于我们实验的空间尺度有限。α和β多样性的稳定作用导致景观尺度上存在正的多样性-稳定性关系。我们的研究结果表明了生物同质化的破坏作用,并表明为了维持生态系统功能和服务的稳定性,应该在多个空间尺度上保护生物多样性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f368/8244107/112871908025/ECY-102-e03332-g001.jpg

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