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Catchment land use as a predictor of the macroinvertebrate community changes between inlet and outlet of small water dams

机译:集水区土地用途可预测小型水坝入口和出口之间大型无脊椎动物群落的变化

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Changes in land use practices have affected the integrity and the quality of stream water worldwide. Effective catchment management, in terms of land use alteration, depends on our ability to quantify ecologically significant changes and to discriminate among varying levels of impact. In this study, we assessed the structural and functional changes upstream and downstream of eight small water reservoirs in western Slovakia and the relationship between these changes and shifts in physicochemical parameters as a consequence of stream damming and catchment land use. Dams were categorized into two groups, the first with both inlet and outlet situated in deforested and agricultural landscape and the second with inlet flowing through natural and forested landscape, while outlet is situated in deforested and urban region. Using a "between-groups" principal components analysis and a "between-groups" fuzzy principal components analysis, we found significant differences in structural and functional composition of macroinvertebrate communities between inlets with forested catchment and outlets flowing through agricultural, urban landscape. The structural dissimilarity is best explained by the physicochemical and biological characteristics of the aquatic environment, while functional variation of communities is best explained by land use of an area surrounding the stream. The distance in structural and functional community composition between inlet and outlet was linked with difference in environmental conditions between these habitats. The change of structural community composition significantly reflected shift in the water temperature and phosphorus concentration, while the change of functional community composition was determined by change of nutrient concentrations (e.g., PO4, NO3, NH4) and pH.
机译:土地使用方式的变化已经影响了全球溪流水的完整性和质量。就土地用途的变化而言,有效的集水区管理取决于我们量化生态上重大变化并区分影响程度的能力。在这项研究中,我们评估了斯洛伐克西部8个小型水库上游和下游的结构和功能变化,以及这些变化与物理化学参数变化之间的关系,这些变化是由于水坝和流域土地使用的结果。大坝分为两类,第一类的进口和出口都位于森林和农业景观中,第二类的进口流经自然和森林景观,而出口则位于森林和城市地区。使用“组间”主成分分析和“组间”模糊主成分分析,我们发现有林木集水区的入口和流经农业,城市景观的出口之间的大型无脊椎动物群落的结构和功能组成存在显着差异。通过水生环境的物理化学和生物学特性可以最好地解释结构上的差异,而通过溪流周围区域的土地利用可以最好地解释群落的功能变化。入口和出口之间结构和功能群落组成的距离与这些生境之间环境条件的差异有关。结构群落组成的变化显着反映了水温和磷浓度的变化,而功能群落组成的变化由养分浓度(例如,PO4,NO3,NH4)和pH的变化确定。

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