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Macroinvertebrate diversity in fragmented Alpine streams: implications for freshwater conservation

机译:支离破碎的高山河流中的无脊椎动物多样性:对淡水保护的意义

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Lakes and reservoirs disrupt the longitudinal connectivity of streams, considerably affecting benthic macroinvertebrate assemblages and diversity. Changes in assemblage composition within fragments can result from habitat alteration and reduced dispersal between fragments. We investigated the effects of habitat fragmentation in 10 Alpine streams, examining 69 taxa of benthic macroinvertebrates from 22 sites in fragmented and free-flowing streams. Total taxon richness (α-diversity) ranged from 6 to 27 in individual sites, and total richness was not significantly affected by fragmentation. However, Ephemeroptera and Diptera (excluding Simuliidae) richness was significantly reduced in stream fragments. Beta-diversity indicated a high degree of taxon turnover among sites within streams, but was not significantly different between fragmented and unfragmented streams. Characterizing the biological, physiological, and ecological traits of Ephemeroptera showed that communities in reservoir-fragmented streams had a higher affinity for fine sediments, increased temperatures, and reduced current velocity. Taxon assemblages in fragments were not nested subsets of unfragmented site assemblages. Thus, species turnover and species replacement in fragments is common, suggesting that most taxa are able to freely disperse among fragments. We suggest that habitat alteration was the primary cause of changes in assemblage structure in these streams. Consequently, habitat-based conservation is likely to be successful in maintaining populations of all but the weakest dispersers.
机译:湖泊和水库破坏了河流的纵向连通性,极大地影响了底栖大型无脊椎动物的聚集和多样性。片段内组合物组成的变化可能是由于栖息地的改变和片段间散布的减少而导致的。我们调查了10个高山流中栖息地破碎化的影响,检查了来自破碎流和自由流动流中22个地点的69个底栖大型无脊椎动物类群。单个站点中的总分类单元富集度(α多样性)范围从6到27,并且总富集度不受碎片影响显着。但是,E片段中的星翅目和双翅目(不包括Sim科)丰富度显着降低。 Beta多样性表明流内站点之间的分类群转换程度很高,但在零散和未分段的流之间没有显着差异。表征E的生物学,生理和生态特征表明,水库碎片流中的群落对细小沉积物具有更高的亲和力,温度升高,流速降低。片段中的分类单元组合不是未片段化站点组合的嵌套子集。因此,碎片中的物种更新和物种替换是很普遍的,这表明大多数分类群能够在碎片之间自由地分散。我们建议栖息地的改变是这些溪流的集合结构变化的主要原因。因此,基于栖息地的保护很可能会成功维持除最弱的扩散器以外的所有种群。

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