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首页> 外文期刊>Aquatic Biology >Influences of dispersal and local environmental factors on stream macroinvertebrate communities in Qinjiang River, Guangxi, China
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Influences of dispersal and local environmental factors on stream macroinvertebrate communities in Qinjiang River, Guangxi, China

机译:分散和局部环境因素对广西秦江河川大型无脊椎动物群落的影响

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ABSTRACT: Identifying the underlying mechanisms that explain the spatial variation of stream macroinvertebrate assemblages is crucial for the protection of species diversity. Consequently, questions regarding how much variance in macroinvertebrate community structure is related to spatial dispersal and local environmental factors, and which environmental variables are the key drivers have broad research and management implications. Based on data from 22 stream sites within the Qinjiang River watershed, Guangxi, China, we examined the variation in macroinvertebrate community structure attributable to local environmental factors (i.e. stream physical habitat and water chemistry) vs. spatial dispersal factors (i.e. overland and watercourse spatial eigenvectors among sampling sites) using variation partitioning procedures. Overall, we found that stream macroinvertebrates are influenced both by local environmental factors and spatial dispersal factors. The most important environmental factors structuring macroinvertebrate assemblages were current velocity, dissolved oxygen, conductivity, total phosphorus, and physical habitat quality. Both overland and watercourse dispersal pathways had a similar influence on macroinvertebrate assemblages. These results demonstrate that stream macroinvertebrates within the studied landscape are constrained by local environmental conditions and dispersal factors, and hence comply with the niche-based species sorting hypothesis in the context of metacommunity ecology.
机译:摘要:查明解释大型水生无脊椎动物组合的空间变化的潜在机制对于保护物种多样性至关重要。因此,有关大型无脊椎动物群落结构差异多少与空间扩散和局部环境因素有关,以及哪些环境变量是关键驱动因素的问题具有广泛的研究和管理意义。基于来自中国广西秦江流域内22个溪流站点的数据,我们研究了由于当地环境因素(即溪流的自然栖息地和水化学)与空间扩散因素(即陆上和河道空间)而导致的大型无脊椎动物群落结构的变化。样本位点之间的特征向量)使用变异划分程序。总体而言,我们发现河流大型无脊椎动物同时受当地环境因素和空间扩散因素的影响。构成大型无脊椎动物集合的最重要的环境因素是电流速度,溶解氧,电导率,总磷和物理栖息地质量。陆上和河道的扩散途径都对大型无脊椎动物组合有相似的影响。这些结果表明,所研究景观中的河流大型无脊椎动物受到当地环境条件和扩散因素的约束,因此符合元社区生态学背景下基于生态位的物种分类假设。

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