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Relative importance of environmental, geographic, and spatial variables on zooplankton metacommunities

机译:环境,地理和空间变量对浮游车地区的相对重要性

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Understanding the factors responsible for structuring ecological communities is a central goal in community ecology. Previous work has focused on determining the relative roles of two classes of variables (e.g., spatial and environmental) on community composition. However, this approach may ignore the disproportionate impact of variables within classes, and is often confounded by spatial autocorrelation leading to collinearity among variables of different classes. Here, we combine pattern‐based metacommunity and machine learning analyses to characterize metacommunity structure of zooplankton from lakes in the northeast United States and to identify environmental, spatial, and geographic covariates associated with metacommunity structure. Analyses were performed for the entire metacommunity and for three zooplankton subsets (cladocerans, copepods, and rotifers), as the variables associated with community structure in these groups were hypothesized to differ. Species distributions of all subsets adhered to an environmental, spatial, and/or geographic gradient, but differed in metacommunity pattern, as copepod species distributions responded independently of one another, while the entire zooplankton metacommunity, cladocerans, and rotifers replaced one another in discrete groups. While environmental variables were nearly always the most important to metacommunity structure, the relative importance of variables differed among zooplankton subsets, suggesting that zooplankton subsets differ in their environmental tolerances and dispersal‐limitation.
机译:了解负责构建生态社区的因素是社区生态的核心目标。以前的工作侧重于确定两类变量(例如,空间和环境)对社区组成的相对角色。然而,这种方法可能忽略类别中变量的不成比例的影响,并且通常被空间自相关的混淆,导致不同类别的变量之间的共同性。在这里,我们将基于模式的MetaComenity和机器学习分析结合起来,以从东北部湖泊的Zooplankton的MetaClancity结构表征,并识别与MetaComity结构相关的环境,空间和地理协变量。对整个MetAcomunity进行分析,并对三个浮游植物亚群(Cladocerans,CopePods和Rotifers)进行,因为与这些组中的群落结构相关的变量被假设为不同。所有子集的种类分布粘附在环境,空间和/或地理梯度,但在MetaceAconity模式中不同,因为Copepod物种分布彼此独立响应,而整个浮游动物代理,克拉根和轮料和轮料在离散群体中彼此取代。虽然环境变量几乎始终是MetaComenity结构最重要的,但浮游动物子集中变量不同的重要性,这表明浮游动物子集在其环境宽容和分散限制中不同。

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