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Environmental heterogeneity and β diversity of stream macroinvertebrate communities at intermediate spatial scales

机译:中等空间尺度上河水大型无脊椎动物群落的环境异质性和β多样性

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Theory predicts that different components of species diversity should increase with environmental heterogeneity. Our main aim was to examine the relationship between β-diversity and' environmental heterogeneity in a system with high habitat heterogeneity and very small spatial distances between sites. This system allowed us to examine the effect of habitat heterogeneity on β-diversity in the absence of dispersal limitation. We surveyed 100 riffle sites (10 riffles in each of 10 streams) for benthic macroinvertebrates in a boreal drainage basin. Streams differed in average community composition (based on canonical analysis of principal coordinates) and heterogeneity in community composition (based on test of homogeneity of dispersion). These results were robust regardless of the distance measures used in distance-based multivariate analyses. β-diversity was not significantly correlated with stream habitat heterogeneity, despite the fact that the latter was quantified by a large set of environmental variables deemed important for species occurrence in our study streams. Thus, we suggest that the relationship between β-diversity and habitat heterogeneity was masked by individual species-environment responses and mass effects. Thus, the β-diversity-habitat heterogeneity relationship may not always be significant, a result that may have important consequences for understanding the structure of community patterns. Despite the absence of a significant β-diversity-habitat heterogeneity relationship, community structure was significantly associated with environmental factors (e.g., moss cover, stream width, velocity) across the streams in distance-based redundancy analysis. This finding suggests that different ways to associate β-diversity, community structure, and environmental conditions may yield different insights into the structure of biotic communities.
机译:理论预测,物种多样性的不同组成部分应随着环境异质性的增加而增加。我们的主要目的是在具有高栖息地异质性和站点间空间距离很小的系统中研究β多样性与环境异质性之间的关系。该系统使我们能够在没有扩散限制的情况下研究生境异质性对β多样性的影响。我们调查了北流域盆地底栖大型无脊椎动物的100个浅滩位置(每10个溪流中的10个浅滩)。河流的平均群落组成(基于主坐标的规范分析)和群落组成的异质性(基于分散体的同质性测试)有所不同。无论基于距离的多元分析中使用的距离度量如何,这些结果都是可靠的。 β-多样性与河流生境异质性没有显着相关性,尽管事实是后者是由大量环境变量量化的,这些变量被认为对我们研究河流中物种的发生很重要。因此,我们认为β-多样性与栖息地异质性之间的关系被个体物种-环境响应和质量效应所掩盖。因此,β-多样性-栖息地异质性关系可能并不总是很重要,其结果可能对理解群落模式的结构具有重要的意义。尽管不存在显着的β-多样性-栖息地异质性关系,但在基于距离的冗余分析中,群落结构与河流中的环境因素(例如,苔藓覆盖,河流宽度,速度)显着相关。这一发现表明,将β多样性,群落结构和环境条件联系起来的不同方法可能会产生对生物群落结构的不同见解。

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