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Spatial diversity patterns of Pristimantis frogs in the Tropical Andes

机译:热带安第斯山脉Pristimantis青蛙的空间多样性格局

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摘要

Although biodiversity gradients have been widely documented, the factors governing broad‐scale patterns in species richness are still a source of intense debate and interest in ecology, evolution, and conservation biology. Here, we tested whether spatial hypotheses (species–area effect, topographic heterogeneity, mid‐domain null model, and latitudinal effect) explain the pattern of diversity observed along the altitudinal gradient of Andean rain frogs of the genus Pristimantis. We compiled a gamma‐diversity database of 378 species of Pristimantis from the tropical Andes, specifically from Colombia to Bolivia, using records collected above 500 m.a.s.l. Analyses were performed at three spatial levels: Tropical Andes as a whole, split in its two main domains (Northern and Central Andes), and split in its 11 main mountain ranges. Species richness, area, and topographic heterogeneity were calculated for each 500‐m‐width elevational band. Spatial hypotheses were tested using linear regression models. We examined the fit of the observed diversity to the mid‐domain hypothesis using randomizations. The species richness of Pristimantis showed a hump‐shaped pattern across most of the altitudinal gradients of the Tropical Andes. There was high variability in the relationship between area and species richness along the Tropical Andes. Correcting for area effects had little impact in the shape of the empirical pattern of biodiversity curves. Mid‐domain models produced similar gradients in species richness relative to empirical gradients, but the fit varied among mountain ranges. The effect of topographic heterogeneity on species richness varied among mountain ranges. There was a significant negative relationship between latitude and species richness. Our findings suggest that spatial processes partially explain the richness patterns of Pristimantis frogs along the Tropical Andes. Explaining the current patterns of biodiversity in this hot spot may require further studies on other possible underlying mechanisms (e.g., historical, biotic, or climatic hypotheses) to elucidate the factors that limit the ranges of species along this elevational gradient.
机译:尽管已经广泛记录了生物多样性梯度,但支配物种丰富性的大范围模式的因素仍然引起人们对生态,进化和保护生物学的激烈辩论和兴趣。在这里,我们测试了空间假设(物种-区域效应,地形异质性,中域零模型和纬度效应)是否解释了沿Pristimantis属安第斯雨蛙的海拔梯度观察到的多样性模式。我们使用在500 m.a.s.l以上收集的记录,对来自热带安第斯山脉(特别是从哥伦比亚到玻利维亚)的378种Pristimantis的伽马多样性数据库进行了汇编。在三个空间级别上进行了分析:整体上是热带安第斯山脉,分为两个主要区域(北部和中部安第斯山脉),并且在其11个主要山脉中都有分布。计算了每个500米宽的海拔带的物种丰富度,面积和地形异质性。使用线性回归模型检验了空间假设。我们使用随机化方法检验了观察到的多样性与中域假设的契合度。 Pristimantis的物种丰富度在热带安第斯山脉的大多数垂直梯度上呈驼峰状。热带安第斯山脉的面积与物种丰富度之间的关系存在很大的变化。校正面积效应对生物多样性曲线经验模式的形状影响很小。相对于经验梯度,中域模型在物种丰富度上产生了相似的梯度,但拟合度在山脉之间变化。地形异质性对物种丰富度的影响因山脉而异。纬度与物种丰富度之间存在显着的负相关关系。我们的发现表明,空间过程部分地解释了热带安第斯山脉沿岸Pristimantis青蛙的丰富模式。要解释该热点地区当前的生物多样性模式,可能需要对其他可能的潜在机制(例如历史,生物或气候假设)进行进一步研究,以阐明限制沿该海拔梯度分布的物种范围的因素。

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