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Impacts of damming and climate change on the ecosystem structure of headwater streams: a case study from the Pyrenees

机译:筑坝和气候变化对源头溪流生态系统结构的影响——以比利牛斯山脉为例

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摘要

Climate change, damming, and metal pollution are among the main anthropogenic threats to headwater streams. We designed a case study to assess how these stressors impact the ecosystem structure of headwater streams by using the biofilm and macroinvertebrate communities of a Pyrenean stream. We observed a strong seasonal pattern in the stream that interacted with the analysed stressors by having synergistic, but also antagonistic, responses on the ecosystem structural parameters. Both damming and a decrease in precipitation reduced the water flow of the stream and increased its temperature, which promoted an increase in algal and macroinvertebrate biomass at the expense of the biodiversity of their communities, a situation expected to worsen in a climate change context. The decrease in precipitation also increased the concentration of metals and metalloids in the water column and in biofilms, but the water diversion from damming reduced their contributions downstream. The maintenance of an adequate ecological flow in dam-impounded streams is encouraged to overcome these impacts in the current climate change context. More field studies are needed to assess how multiple anthropogenic stressors interact and threaten the ecosystem integrity in a realistic and applied context.
机译:气候变化、筑坝、和金属污染主要的人为威胁上游源头之一流。这些压力影响的生态系统结构通过使用生物膜和上游源头溪流比利牛斯山脉的大型无脊椎动物社区流。流相互作用的分析压力通过协同,也敌对的,反应在生态系统结构参数。降水减少降低了水流流和增加了的温度,促进藻的增加和大型无脊椎动物生物量为代价的他们的社区的生物多样性状况在气候变化背景下可能加剧。降水的减少也增加了浓度的金属和非金属水体生物膜,但水偏离筑坝减少了下游的贡献。足够的生态流dam-impounded流鼓励克服这些影响呢当前气候变化的上下文。研究需要评估多个人为的压力和威胁进行交互生态系统完整性的一个现实的和应用上下文。

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