首页> 外文期刊>Journal of Biogeography >River network properties shape alpha-diversity and community similarity patterns of aquatic insect communities across major drainage basins
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River network properties shape alpha-diversity and community similarity patterns of aquatic insect communities across major drainage basins

机译:河网特征影响主要流域水生昆虫群落的α多样性和群落相似性

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Aim Spatial dynamics and habitat connectivity affect community composition and diversity in many ecosystems. For many decades, diversity patterns in riverine ecosystems were thought to be related to local environmental conditions. Recent theoretical work, however, suggests that diversity in rivers is strongly affected by dispersal along the dendritic landscape structure and that environmental conditions are intrinsically linked to the network position. In this study we tested hypotheses on network position by relating river network geometry and connectivity to multi-level biodiversity patterns across large scales.Location Three major alpine drainage basins in Switzerland were studied (Rhine, Rhone, Ticino), extending over an elevational gradient of > 2500 m and covering a total area of 41,285 km2.Methods We sampled all may-, stone- and caddisfly species at 217 sites which representatively cover the three river networks. Using generalized additive models, we related diversity patterns in aquatic insects to centrality within the network as a directriver network property, and to catchment area and elevation, which are related to network position.Results Centrality within the river network, and catchment area and elevation had significant and interacting effects on oc-diversity and community similarity. Alpha diversity was lowest in peripheral headwaters and at high elevations. Species richness generally increased with increasing catchment area. Well-connected, central communities within the river network had greater a-diversity than more peripheral communities did. Elevation was a strong predictor of oc-diversity, with the most diverse communities found at mid-elevation sites. Community similarity decreased with increasing along-stream distance between sites.Main conclusions Our results highlight the fact that diversity patterns of aquatic insects in river systems are related to local factors such as elevation, but interact with network properties and connectivity along waterways, and differ among insect orders. These findings are consistent with dispersal-limited processes and indicate that riverine diversity should be addressed and protected taking the river network structure into account.
机译:目的空间动态和栖息地的连通性影响许多生态系统中的群落组成和多样性。几十年来,人们认为河流生态系统中的多样性模式与当地环境条件有关。然而,最近的理论工作表明,河流的多样性受到树突景观结构沿线分布的强烈影响,环境条件与网络位置有着内在的联系。在这项研究中,我们通过将河流网络的几何形状和连通性与大规模的多层次生物多样性模式相关联,检验了网络位置的假设。位置研究了瑞士的三个主要高山流域(莱茵,罗纳,提契诺州),其海拔梯度为> 2500 m,总面积为41,285 km2。方法我们对217个地点(包括三个河网)的所有可能,石器和毒蛾物种进行了采样。使用广义加性模型,我们将水生昆虫的多样性模式与作为直接河网性质的网状中心以及与网状位置有关的流域面积和海拔相关联。对oc-多样性和社区相似性具有重大而相互作用的影响。在外围源头和高海拔地区,阿尔法多样性最低。物种丰富度通常随着流域面积的增加而增加。与更多外围社区相比,河流网络中联系良好的中央社区具有更大的多样性。海拔高度是oc-多样性的有力预测指标,在海拔中部站点发现了最多样化的社区。主要结论我们的结果凸显了这样一个事实,即河流系统中水生昆虫的多样性模式与局部因素(例如海拔)有关,但与网络特性和沿水路的连通性相互作用,并且之间存在差异。昆虫命令。这些发现与限制扩散的过程是一致的,并表明应考虑到河流网络结构来解决和保护河流多样性。

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