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生物多样性和生态系统过程的多个维度:探索种内、种间和种间多样性的联合影响。

Multiple dimensions of biodiversity and ecosystem processes: Exploring the joint influence of intraspecific, specific and interspecific diversity.

作者信息

Eduardo Anderson A

机构信息

Institute of Biology, Federal University of Bahia - UFBA, Ademar de Barros Avenue. Salvador, Bahia ZIP 40170-290, Brazil.

出版信息

J Theor Biol. 2016 Sep 7;404:215-221. doi: 10.1016/j.jtbi.2016.06.004. Epub 2016 Jun 8.

Abstract

The positive influence of biodiversity on ecosystem processes was the focus of intense debate in ecology throughout the recent decades, becoming accepted and treated as a new paradigm in contemporary ecology. However, the available literature in this research field extensively explores species richness as an unidimensional measure for biodiversity. The present study explores how different components of biological diversity (number of genotypes, species, and functional groups) can influence an ecosystem process (biomass fixation). A mathematical model was employed and the simulation results showed that species richness per se does not affect the ecosystem productivity. Genotypic richness affected positively the ecosystem, but only if the genotypes are functionally complementary. The functional groups richness always affected positively the simulated ecosystem process. When together, richness at the different components of biological diversity showed stronger effect on ecosystem, and the scenarios with high species, genotypes and functional groups richness were the most productive ones. The results also allowed to observe that the ecosystems which are diverse in terms of functional groups and genotypes can be less susceptible to species loss. Finally, it is argued that a multiple dimension approach to biodiversity is relevant to advance the current knowledge on the relation between biodiversity and ecosystem functioning.

摘要

近几十年来,生物多样性对生态系统过程的积极影响一直是生态学领域激烈辩论的焦点,并已成为当代生态学中被接受和视为新范式的内容。然而,该研究领域的现有文献广泛将物种丰富度作为生物多样性的一维衡量指标进行探讨。本研究探讨了生物多样性的不同组成部分(基因型数量、物种数量和功能组数量)如何影响生态系统过程(生物量固定)。我们采用了一个数学模型,模拟结果表明,物种丰富度本身并不影响生态系统生产力。基因型丰富度对生态系统有积极影响,但前提是这些基因型在功能上具有互补性。功能组丰富度始终对模拟的生态系统过程有积极影响。当生物多样性的不同组成部分的丰富度共同作用时,对生态系统的影响更强,物种、基因型和功能组丰富度高的情景是生产力最高的情景。研究结果还表明,在功能组和基因型方面具有多样性的生态系统可能对物种丧失更具抵抗力。最后,有人认为,采用多维度方法研究生物多样性对于推进当前关于生物多样性与生态系统功能关系的认识具有重要意义。

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