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Comparison of littoral and deep water sampling methods for assessing macroinvertebrate assemblages along the longitudinal profile of a very large river (the Danube River, Europe)

机译:沿河和深水采样方法的比较,用于评估一条非常大的河流(欧洲多瑙河)的纵剖面上的大型无脊椎动物组合

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摘要

We comparatively examined the role of littoral and deep water sampling methods in assessing macroinvertebrate assemblages and in characterizing longitudinal changes in assemblage structure along >2,500-km-long course of the Danube River, Europe. The effectiveness of detecting taxa corresponded well with an inshore-offshore gradient in sampling (i.e., distance from shore). Nevertheless, each method (i.e., littoral multihabitat sampling, kick and sweep sampling, and deep water dredging) contributed to some degree to overall taxa richness and species composition. Sampling in different depth zones characterized different assemblages, and consequently, inshore-offshore position was at least as important determinant of assemblage structure as longitudinal position of sampling sites in the river. Although we found significant congruency in the spatial variability of assemblages among the sampling methods, the relationships were only moderate. Our study on the large Danube River confirms studies from smaller rivers in other geographic regions that littoral monitoring provides higher taxa richness and more responsive changes to longitudinal gradients than deep water samples. Nevertheless, it also shows that sampling in different depth zones provides supplementary information on assemblage structure. Understanding changes in macroinvertebrate assemblages related to differences in sampling method is crucial to improve the bioassessment and environmental management of large rivers.
机译:我们比较了沿岸和深水采样方法在评估大型无脊椎动物组合以及表征多瑙河沿岸> 2,500公里长的路线沿组合结构的纵向变化方面的作用。检测分类单元的有效性与采样中的近岸-近海梯度(即距海岸的距离)非常吻合。但是,每种方法(即沿岸多生境采样,kick水和清水采样以及深水疏ed)在一定程度上有助于总体分类单元的丰富性和物种组成。在不同深度区域的采样具有不同的组合特征,因此,近岸-近海位置至少是与河流中采样点的纵向位置一样重要的组合结构决定因素。尽管我们发现抽样方法之间组合的空间变异性具有显着的一致性,但是它们之间的关系只是中等的。我们对多瑙河大河的研究证实了其他地理区域中较小河流的研究,与深水样本相比,沿海监测提供了更高的分类单元丰富度和对纵向梯度的更敏感响应。然而,这也表明在不同深度区域的采样提供了有关组装结构的补充信息。了解与采样方法不同有关的大型无脊椎动物组合的变化对于改善大型河流的生物评估和环境管理至关重要。

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