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营养富集使湖泊底栖生物组合在局部和区域尺度上均质化。

Nutrient enrichment homogenizes lake benthic assemblages at local and regional scales.

机构信息

School of Natural Sciences, Department of Zoology, Trinity College, Dublin 2, Ireland.

出版信息

Ecology. 2009 Dec;90(12):3470-7. doi: 10.1890/09-0415.1.

Abstract

The compositional heterogeneity of biotic assemblages among sites, or beta-diversity, regulates the relationship between local and regional species diversity across scales. Recent work has suggested that increased harshness of environmental conditions tends to reduce beta-diversity by decreasing the importance of stochastic processes in structuring assemblages. We investigated the effect of nutrient enrichment on the compositional heterogeneity of lake benthic invertebrate assemblages in Ireland at both local (within-lake) and regional (among-lake) scales. At local scales, we found that the compositional heterogeneity of benthic assemblages was related inversely to the extent of nutrient enrichment (as indicated by measurements of water column total phosphorus, total nitrogen, and chlorophyll a), after effects of lake morphology (i.e., surface area, connectivity, and depth of sampling) and alkalinity were accounted for. At regional scales, we found that nutrient-rich lakes had significantly more homogenous benthic assemblages than nutrient-poor lakes, over and above the effect of alkalinity and across a similar range of lake morphologies. These findings have profound implications for global aquatic biodiversity, as the homogenization of benthic assemblages at both local and regional scales may have important and unpredictable effects on whole aquatic ecosystems, with potentially considerable ecological and evolutionary consequences.

摘要

生物组合在各地点之间的组成异质性,或β多样性,调节了局部和区域物种多样性在不同尺度上的关系。最近的研究表明,环境条件的苛刻程度增加往往会通过降低随机过程在组合结构中的重要性来降低β多样性。我们调查了营养物质富集对爱尔兰湖泊底栖无脊椎动物组合组成异质性的影响,包括在局部(湖泊内)和区域(湖泊间)尺度上。在局部尺度上,我们发现,在考虑了湖泊形态(即表面积、连通性和采样深度)和碱度的影响后,底栖组合的组成异质性与营养物质富集的程度呈负相关(如水柱总磷、总氮和叶绿素 a 的测量所示)。在区域尺度上,我们发现,营养丰富的湖泊的底栖组合比营养贫乏的湖泊更加均匀,这超出了碱度的影响范围,而且跨越了类似的湖泊形态范围。这些发现对全球水生生物多样性具有深远的影响,因为底栖组合在局部和区域尺度上的同质化可能对整个水生生态系统产生重要且不可预测的影响,可能会带来相当大的生态和进化后果。

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