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Patterns in macroinvertebrate assemblages at different spatial scales. Implications of hydrological connectivity in a large floodplain river

机译:不同空间尺度下大型无脊椎动物的格局。洪泛区大河水文连通性的意义

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The habitat heterogeneity generated and sustained by the connectivity of floodplain habitats, the seasonal flood pulse, and the variability of the physical structures typically found in floodplains of large rivers results in a variable space-time mosaic of water sources that results in a high biodiversity of the river-floodplain system. In order to assess the implications of natural connectivity and the heterogeneity on the patterns of macroinvertebrate assemblages at different spatial scales, monthly samplings in six different mesohabitats (lakes with different hydrological connection and secondary channels with permanently and intermittent flow) of the ParancL River floodplain were performed from April 2005 to March 2006. The mesohabitats had different granulometry and detritus composition of their bottom sediments. They also had different conductivity, transparency, and depth in relation to the different connectivity degrees. Mesohabitats differed in the abundance of macroinvertebrates of different taxonomic groups and diversity. The environmental variables were correlated to the patterns of macroinvertebrate abundance, with dominance of different species of annelids and mollusks at the patch, mesohabitats, and island scales. An alpha diversity gradient from the isolated lake (65 taxonomic units) to the secondary channels (25 taxonomic units) was obtained. The analyzed mesohabitats showed a high taxa turnover, with high values not only among the mesohabitats located in the different islands, but also among the mesohabitats in relation to different connectivity degrees. The mesohabitats showed negative co-occurrence of macroinvertebrate assemblages. The spatial heterogeneity, sustained by the connectivity degree, played a key role in structuring benthic assemblages at different scales, positively influencing the regional diversity.
机译:洪泛区生境的连通性,季节性洪水脉动以及大河流域洪泛区通常发现的物理结构的变化所产生并维持的栖息地异质性导致水源的时空镶嵌变化,从而导致高水平的生物多样性。河漫滩系统。为了评估自然连通性和异质性对不同空间尺度上的大型无脊椎动物组合的影响,我们对ParanclL河洪泛区的六个不同的中生境(具有不同水文联系的湖泊和具有永久性和间歇性流动的次要通道)进行了每月采样。从2005年4月至2006年3月进行的中生动物的底泥沉积物具有不同的粒度和碎屑成分。相对于不同的连接度,它们还具有不同的电导率,透明度和深度。中生境在不同分类组和多样性的大型无脊椎动物的数量上有所不同。环境变量与大型无脊椎动物的丰度模式相关,在斑块,中生境和岛屿尺度上,不同种类的肘类和软体动物占优势。从孤立的湖泊(65个分类单位)到次要通道(25个分类单位)获得了α多样性梯度。分析的中生境显示出很高的分类单元周转率,不仅位于不同岛屿的中生境中,而且与不同连通度有关的中生境中的值也很高。中生境显示大型无脊椎动物组合的阴性共生。连通度维持的空间异质性在构造不同规模底栖组合中起着关键作用,对区域多样性产生积极影响。

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