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棘鱼的进化多样化影响生态系统功能。

Evolutionary diversification in stickleback affects ecosystem functioning.

作者信息

Harmon Luke J, Matthews Blake, Des Roches Simone, Chase Jonathan M, Shurin Jonathan B, Schluter Dolph

机构信息

Department of Biological Sciences, University of Idaho, Moscow, Idaho 83844-3051, USA.

出版信息

Nature. 2009 Apr 30;458(7242):1167-70. doi: 10.1038/nature07974. Epub 2009 Apr 1.

DOI:10.1038/nature07974
PMID:19339968
Abstract

Explaining the ecological causes of evolutionary diversification is a major focus of biology, but surprisingly little has been said about the effects of evolutionary diversification on ecosystems. The number of species in an ecosystem and their traits are key predictors of many ecosystem-level processes, such as rates of productivity, biomass sequestration and decomposition. Here we demonstrate short-term ecosystem-level effects of adaptive radiation in the threespine stickleback (Gasterosteus aculeatus) over the past 10,000 years. These fish have undergone recent parallel diversification in several lakes in coastal British Columbia, resulting in the formation of two specialized species (benthic and limnetic) from a generalist ancestor. Using a mesocosm experiment, we demonstrate that this diversification has strong effects on ecosystems, affecting prey community structure, total primary production, and the nature of dissolved organic materials that regulate the spectral properties of light transmission in the system. However, these ecosystem effects do not simply increase in their relative strength with increasing specialization and species richness; instead, they reflect the complex and indirect consequences of ecosystem engineering by sticklebacks. It is well known that ecological factors influence adaptive radiation. We demonstrate that adaptive radiation, even over short timescales, can have profound effects on ecosystems.

摘要

解释进化多样化的生态成因是生物学的一个主要研究重点,但令人惊讶的是,关于进化多样化对生态系统的影响却很少有人提及。生态系统中的物种数量及其特征是许多生态系统层面过程的关键预测指标,例如生产力、生物量固存和分解速率等。在此,我们展示了过去一万年里三刺鱼(Gasterosteus aculeatus)适应性辐射对生态系统层面的短期影响。这些鱼类最近在不列颠哥伦比亚省沿海的几个湖泊中经历了平行多样化,从一个泛化祖先形成了两个特化物种(底栖和湖沼)。通过中宇宙实验,我们证明这种多样化对生态系统有强烈影响,影响猎物群落结构、总初级生产力以及调节系统中光传输光谱特性的溶解有机物质的性质。然而,这些生态系统影响并非简单地随着特化程度和物种丰富度的增加而在相对强度上增加;相反,它们反映了三刺鱼进行生态系统工程的复杂间接后果。众所周知,生态因素会影响适应性辐射。我们证明,即使在短时间尺度上,适应性辐射也会对生态系统产生深远影响。

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