National Research Council of Italy, Research Institute on Terrestrial Ecosystems (CN-IRET), Florence, Italy.
NBFC (National Biodiversity Future Center), 90133, Palermo, Italy.
Sci Rep. 2024 Apr 18;14(1):8956. doi: 10.1038/s41598-024-59456-y.
As known "ecosystem engineers", beavers influence river hydrology, geomorphology, biochemistry, and biological assemblages. However, there is a lack of research regarding the effects of beaver activities on freshwater meiofauna. In this study, we investigated the taxonomic and functional composition of the benthic copepod assemblage of a segment of the Tiber River (Italy) where a beaver dam, created about 7 weeks before our survey, had formed a semi-lentic habitat upstream and a lotic habitat downstream of the dam. We also analyzed the copepod assemblage before and after a flood event that destroyed the beaver dam, providing a unique opportunity to observe changes in a naturally reversing scenario. Our analyses revealed that, while the taxonomic composition and functional traits of the copepod assemblage remained largely unchanged across the recently formed semi-lentic and lotic habitats, substantial differences were evident between the dammed and undammed states. The dammed state showed lower copepod abundances, biomass, and functionality than the undammed one. These results highlight the role of beaver dams in changing the composition and functionality of meiofaunal assemblages offering insights into the dynamic interactions within aquatic ecosystems.
正如人们所知,海狸是“生态系统工程师”,它们影响着河流的水文学、地貌学、生物化学和生物组合。然而,关于海狸活动对淡水小型底栖动物的影响,相关研究还比较缺乏。在这项研究中,我们调查了意大利特韦雷河一段的底栖桡足类动物群的分类和功能组成,在我们的调查之前大约 7 个星期,海狸水坝在该段河上形成了一个半静息生境,在上游,在水坝的下游则是急流生境。我们还分析了在一场洪水事件摧毁水坝前后的桡足类动物群,这为观察自然逆转情景下的变化提供了一个独特的机会。我们的分析表明,尽管桡足类动物群的分类组成和功能特征在新形成的半静息和急流生境中基本保持不变,但在有坝和无坝状态之间存在明显差异。有坝状态下的桡足类动物数量、生物量和功能均低于无坝状态。这些结果强调了海狸水坝在改变小型底栖动物群的组成和功能方面的作用,为了解水生生态系统内的动态相互作用提供了新的视角。