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物种多样性通过种间促进作用增强生态系统功能。

Species diversity enhances ecosystem functioning through interspecific facilitation.

作者信息

Cardinale Bradley J, Palmer Margaret A, Collins Scott L

机构信息

The University of Maryland, Department of Biology, College Park, MD 20742, USA.

出版信息

Nature. 2002 Jan 24;415(6870):426-9. doi: 10.1038/415426a.

Abstract

Facilitation between species is thought to be a key mechanism by which biodiversity affects the rates of resource use that govern the efficiency and productivity of ecosystems; however, there is no direct empirical evidence to support this hypothesis. Here we show that increasing the species diversity of a functional group of aquatic organisms induces facilitative interactions, leading to non-additive changes in resource consumption. We increased the richness and evenness of suspension-feeding caddisfly larvae (Insecta, Trichoptera) in stream mesocosms and found that the increased topographical complexity of the benthic habitat alters patterns of near-bed flow such that the feeding success of individuals is enhanced. Species diversity reduces 'current shading' (that is, the deceleration of flow from upstream to downstream neighbours), allowing diverse assemblages to capture a greater fraction of suspended resources than is caught by any species monoculture. The fundamental nature of this form of hydrodynamic facilitation suggests that it is broadly applicable to freshwater and marine habitats; in addition, it has several analogues in terrestrial ecosystems where fluxes of energy and matter can be influenced by biophysical complexity. Thus, changes in species diversity may alter the probability of positive species interactions, resulting in disproportionately large changes in the functioning of ecosystems.

摘要

物种间的促进作用被认为是生物多样性影响资源利用速率的关键机制,而资源利用速率决定着生态系统的效率和生产力;然而,尚无直接的实证证据支持这一假说。在此,我们表明,增加水生生物功能群的物种多样性会引发促进性相互作用,导致资源消耗出现非加性变化。我们提高了溪流中型生态系统中悬浮取食毛翅目幼虫(昆虫纲,毛翅目)的丰富度和均匀度,发现底栖生境地形复杂性的增加改变了近床水流模式,从而提高了个体的取食成功率。物种多样性减少了“水流遮蔽”(即水流从上游到下游相邻个体处的减速),使多样化组合能够比任何单一物种养殖捕获更多的悬浮资源。这种形式的水动力促进作用的基本性质表明,它广泛适用于淡水和海洋生境;此外,它在陆地生态系统中有若干类似情况,在这些生态系统中,能量和物质通量可能受到生物物理复杂性的影响。因此,物种多样性的变化可能会改变物种间积极相互作用的概率,从而导致生态系统功能发生不成比例的巨大变化。

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