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生物多样性的几个尺度影响生态系统多功能性。

Several scales of biodiversity affect ecosystem multifunctionality.

机构信息

Environmental Studies Department, University of California, Santa Cruz, CA 95064, USA.

出版信息

Proc Natl Acad Sci U S A. 2013 Jun 18;110(25):10219-22. doi: 10.1073/pnas.1220333110. Epub 2013 Jun 3.

Abstract

Society values landscapes that reliably provide many ecosystem functions. As the study of ecosystem functioning expands to include more locations, time spans, and functions, the functional importance of individual species is becoming more apparent. However, the functional importance of individual species does not necessarily translate to the functional importance of biodiversity measured in whole communities of interacting species. Furthermore, ecological diversity at scales larger than neighborhood species richness could also influence the provision of multiple functions over extended time scales. We created experimental landscapes based on whole communities from the world's longest running biodiversity-functioning field experiment to investigate how local species richness (α diversity), distinctness among communities (β diversity), and larger scale species richness (γ diversity) affected eight ecosystem functions over 10 y. Using both threshold-based and unique multifunctionality metrics, we found that α diversity had strong positive effects on most individual functions and multifunctionality, and that positive effects of β and γ diversity emerged only when multiple functions were considered simultaneously. Higher β diversity also reduced the variability in multifunctionality. Thus, in addition to conserving important species, maintaining ecosystem multifunctionality will require diverse landscape mosaics of diverse communities.

摘要

社会重视能够可靠提供多种生态系统功能的景观。随着对生态系统功能的研究扩展到更多的地点、时间跨度和功能,单个物种的功能重要性变得更加明显。然而,单个物种的功能重要性并不一定转化为整个相互作用物种群落中测量的生物多样性的功能重要性。此外,大于邻里物种丰富度的尺度上的生态多样性也可能影响多个功能在扩展时间尺度上的提供。我们基于世界上运行时间最长的生物多样性-功能野外实验的整个群落创建了实验景观,以研究局部物种丰富度(α多样性)、群落之间的差异(β多样性)以及更大尺度上的物种丰富度(γ多样性)如何在 10 年内影响八种生态系统功能。我们使用基于阈值和独特多功能性的指标,发现α多样性对大多数单个功能和多功能性具有很强的正向影响,而β和γ多样性的正向影响只有在同时考虑多个功能时才会出现。较高的β多样性还降低了多功能性的可变性。因此,除了保护重要物种外,维持生态系统多功能性还需要多样化的、具有多样社区的景观镶嵌体。

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