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浮游动物生物多样性与湖泊营养状态:基于资源丰度和分布的解释

Zooplankton biodiversity and lake trophic state: explanations invoking resource abundance and distribution.

作者信息

Barnett Allain, Beisner Beatrix E

机构信息

Department of Biological Sciences, University of Quebec at Montreal, C.P. 8888, Succ. Centre-Ville, Montreal, Quebec H3C 3P8, Canada.

出版信息

Ecology. 2007 Jul;88(7):1675-86. doi: 10.1890/06-1056.1.

Abstract

While empirical studies linking biodiversity to local environmental gradients have emphasized the importance of lake trophic status (related to primary productivity), theoretical studies have implicated resource spatial heterogeneity and resource relative ratios as mechanisms behind these biodiversity patterns. To test the feasibility of these mechanisms in natural aquatic systems, the biodiversity of crustacean zooplankton communities along gradients of total phosphorus (TP) as well as the vertical heterogeneity and relative abundance of their phytoplankton resources were assessed in 18 lakes in Quebec, Canada. Zooplankton community richness was regressed against TP, the spatial distribution of phytoplankton spectral groups, and the relative biomass of spectral groups. Since species richness does not adequately capture ecological function and life history of different taxa, features which are important for mechanistic theories, relationships between zooplankton functional diversity (FD) and resource conditions were examined. Zooplankton species richness showed the previously established tendency to a unimodal relationship with TP, but functional diversity declined linearly over the same gradient. Changes in zooplankton functional diversity could be attributed to changes in both the spatial distribution and type of phytoplankton resource. In the studied lakes, spatial heterogeneity of phytoplankton groups declined with TP, even while biomass of all groups increased. Zooplankton functional diversity was positively related to increased heterogeneity in cyanobacteria spatial distribution. However, a smaller amount of variation in functional diversity was also positively related to the ratio of biomass in diatoms/chrysophytes to cyanobacteria. In all observed relationships, a greater variation of functional diversity than species richness measures was explained by measured factors, suggesting that functional measures of zooplankton communities will benefit ecological research attempting to identify mechanisms behind environmental gradients affecting diversity.

摘要

虽然将生物多样性与当地环境梯度联系起来的实证研究强调了湖泊营养状态(与初级生产力相关)的重要性,但理论研究认为资源空间异质性和资源相对比例是这些生物多样性模式背后的机制。为了测试这些机制在天然水生系统中的可行性,在加拿大魁北克的18个湖泊中评估了沿总磷(TP)梯度的甲壳类浮游动物群落的生物多样性,以及其浮游植物资源的垂直异质性和相对丰度。浮游动物群落丰富度与TP、浮游植物光谱组的空间分布以及光谱组的相对生物量进行了回归分析。由于物种丰富度不能充分反映不同分类群的生态功能和生活史,而这些特征对机制理论很重要,因此研究了浮游动物功能多样性(FD)与资源条件之间的关系。浮游动物物种丰富度显示出与TP呈单峰关系的先前确立的趋势,但功能多样性在相同梯度上呈线性下降。浮游动物功能多样性的变化可归因于浮游植物资源的空间分布和类型的变化。在所研究的湖泊中,浮游植物群的空间异质性随TP下降,即使所有组的生物量都增加。浮游动物功能多样性与蓝藻空间分布的异质性增加呈正相关。然而,功能多样性的较小变化量也与硅藻/金藻生物量与蓝藻的比例呈正相关。在所有观察到的关系中,测量因素解释了功能多样性比物种丰富度测量更大的变化,这表明浮游动物群落的功能测量将有利于生态研究,试图确定影响多样性的环境梯度背后的机制。

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