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海狸对两种具有不同形态溪流大型底栖无脊椎动物群落的影响。

Beaver effects on macroinvertebrate assemblages in two streams with contrasting morphology.

机构信息

Aquatic Ecology, Eawag, 8600 Dübendorf, Switzerland; Institute of Integrative Biology, ETH-Zürich, 8092 Zürich, Switzerland.

Aquatic Ecology, Eawag, 8600 Dübendorf, Switzerland.

出版信息

Sci Total Environ. 2020 Jun 20;722:137899. doi: 10.1016/j.scitotenv.2020.137899. Epub 2020 Mar 12.

Abstract

Beaver populations are increasing throughout Europe and especially in Switzerland. Beaver are major ecological engineers of fluvial systems, dramatically influencing river morphology, ecohydrology and, consequently, aquatic and terrestrial biota. This study compared macroinvertebrate assemblages and trophic structure at two beaver complexes with contrasting topography in Switzerland over an annual cycle. One complex (Marthalen) was in a low gradient open basin, whereas the other complex (Flaach) flowed through a higher gradient ravine-like basin. Both complexes were embedded in an overall agricultural landscape matrix. Water physico-chemistry differed between the two complexes with nitrogen, phosphorus, and DOC being higher at Marthalen than at Flaach. Both complexes showed strong seasonality in physico-chemistry, but retention of nutrients (N, P) was highest in summer and only at Marthalen. Both complexes also showed strong seasonality in macroinvertebrate assemblages, although assemblages differed substantially between complexes. At Marthalen, macroinvertebrate assemblages were predominantly lentic in character at 'pool' sites within the complex. At Flaach, lotic macroinvertebrate assemblages were common at most sites with some lentic taxa also being present. Dietary shifts based on carbon/nitrogen stable isotopes occurred in spring and summer among sites at both complexes (autochthonous resource use increasing over allochthonous resource use downstream), although being most pronounced at Marthalen. In contrast, similar resource use across sites occurred in winter within both complexes. Although beaver significantly influenced fluvial dynamics and macroinvertebrate assemblage structure at both complexes, this influence was most pronounced at Marthalen where beaver caused the system to become more wetland in character, e.g., via higher hydraulic residence time, than at Flaach. We conclude that topography can shape beaver effects on fluvial systems and resident biota.

摘要

海狸在整个欧洲,尤其是在瑞士,数量正在增加。海狸是河流系统的主要生态工程师,极大地影响了河流形态、生态水文学,进而影响了水生和陆地生物群。本研究比较了瑞士两个具有不同地形的海狸复合体在一年的周期内的大型无脊椎动物组合和营养结构。一个复合体(马塔罗伦)位于低梯度开阔盆地中,而另一个复合体(弗拉赫)流经较高梯度的峡谷状盆地。这两个复合体都嵌入在一个整体的农业景观基质中。两个复合体之间的水物理化学性质存在差异,马塔罗伦的氮、磷和 DOC 含量高于弗拉赫。两个复合体的物理化学性质都具有很强的季节性,但氮、磷等养分的保留在夏季最高,而且仅在马塔罗伦保留。两个复合体的大型无脊椎动物组合也具有很强的季节性,尽管组合在复合体之间有很大的差异。在马塔罗伦,大型无脊椎动物组合在复合体内部的“池塘”点主要是静止水的特征。在弗拉赫,大多数地点都存在流动型大型无脊椎动物组合,也存在一些静止水的分类群。在两个复合体的所有地点,基于碳/氮稳定同位素的饮食变化发生在春季和夏季(自源资源的利用随着下游异源资源的利用而增加),尽管在马塔罗伦最为明显。相比之下,在冬季两个复合体的所有地点都存在类似的资源利用。尽管海狸对两个复合体的河流动力学和大型无脊椎动物组合结构有显著影响,但在马塔罗伦,海狸使系统更具湿地特征,例如,水力停留时间更长,而在弗拉赫,影响较小。我们得出的结论是,地形可以塑造海狸对河流系统和本地生物的影响。

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