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首页> 外文期刊>Biotropica >Spider diversity across an elevation gradient in area de Conservacion Guanacaste (ACG), Costa Rica
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Spider diversity across an elevation gradient in area de Conservacion Guanacaste (ACG), Costa Rica

机译:斯柯卡·戈里卡面积De保守的海拔梯度跨越梯度的蜘蛛多样性

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Throughout the Neotropics, temperature and precipitation change with elevation and these changes affect the assemblage of species at any particular elevation. We documented the diversity of litter-inhabiting spiders, (Arachnida: Araneae) along a Costa Rican elevational gradient as it relates to covarying abiotic factors such as temperature and precipitation. The spiders we collected were principally unidentifiable juveniles, and so we used Barcode Index Numbers (BINs) derived from DNA barcodes as proxies for species-level interim names. We contrasted these taxon-based estimates with phylogenetic measures of alpha- and beta-diversity derived from both the mitochondrial DNA barcode region and a multi-gene phylogeny of spiders and found that neither the abundance nor the species richness of spiders was significantly correlated with elevation, temperature, or precipitation. However, we did find that spider assemblages in the upper elevation cloud forests were phylogenetically clustered, (and this pattern was unrelated to whether the phylogenetic patterns were derived mitochondrially or from a multi-gene analysis). One standard explanation for such a pattern is that harsh abiotic conditions in higher elevation forests have selected for particular spider lineages; however, this remains to be tested fully. The diversity of leaf-litter spider species we uncovered was high and further sampling of spider abundance and diversity across the ACG is likely to yield many new species.
机译:在整个新经节子,温度和降水变化,升高,这些变化会影响任何特定仰角的物种的组装。我们记录了居住居住的蜘蛛(Arachnida:Araneae)的多样性,沿着哥斯达黎加的高度梯度,因为它与Covarying的非生物因子如温度和沉淀有关。我们收集的蜘蛛主要是不明的少年,因此我们使用从DNA条形码派生的条形码索引号(箱)作为物种级别临时名称的代理。我们将这些基于分类的基于分类的估计与来自线粒体DNA条形码区的α和β-多样性的系统发育措施与蜘蛛的多基因系统发育,并且发现蜘蛛的丰富性和物种与升高显着相关,温度或沉淀。然而,我们发现上升高云森林中的蜘蛛组合是系统源性聚集的,(该模式与系统发育模式是否衍生线粒体或多基因分析)无关。这种模式的一个标准解释是较高海拔森林中的苛刻非生物条件为特定的蜘蛛谱系选择了;但是,这仍然是完全测试的。我们未发现的叶子垃圾蜘蛛物种的多样性高,进一步取样蜘蛛丰度和跨越ACG的多样性可能会产生许多新物种。

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