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Patterns of ant species richness along elevational gradients in an arid ecosystem

机译:干旱生态系统中蚂蚁物种丰富度沿海拔梯度的格局

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Aim In this study, we examine patterns of local and regional ant species richness along three elevational gradients in an arid ecosystem. In addition, we test the hypothesis that changes in ant species richness with elevation are related to elevation-dependent changes in climate and available area. Location Spring MOuntains, Nevada, U.S.A. Methods We used pitfall traps placed at each 100-m elevational band in three canyons in the Spring Mountains. We compiled climate data from 68 nearby weather stations. We used multiple regression analysis to examine the effects of annual precipitation, average July precipitation, and maximum and minimum July temperature on ant species richness at each elevational band. Results We found that patterns of local ant species richness different among the three gradients we sampled. Ant species richness increased linearly with elevation along two transects and peaked at mid-elevation along a third transect. This suggests that patterns of species richness based on data from single transects may not generalize to larger spatial scales. Cluster analysis of community similarity revealed a high-elevation species assemblage largely distinct from that of lower elevations. Major changes in the identity of ant species assemblage largely distinct from that of lower elevations. Major changes in the identity of ant species present along elevational gradients tended to coincide with changes in the dominant vegetation. Regional species richness, defined here as the total number of unique species within an elevational band in all three gradients combined, tended to increased band in all three gradients combined, tended to increase with increasing elevation. Available area decreased with increasing elevation. Area was therefore correlated negatively with ant species richness in the Spring Mountains. Mean July maximum and minimum temperature, July precipitation and annual precipitation combined to explain 80% of the variation in ant species richness.
机译:目的在这项研究中,我们研究了干旱生态系统中沿三个海拔梯度的局部和区域蚂蚁物种丰富度模式。此外,我们检验了以下假设:蚂蚁物种丰富度随海拔的变化与气候和可用面积的海拔相关变化有关。位置美国内华达州春季山地方法我们在春季山的三个峡谷中的每个100米高程带上使用了陷阱陷阱。我们收集了附近68个气象站的气候数据。我们使用多元回归分析来检验年降水量,平均7月降水量以及7月最高和最低温度对每个海拔带蚂蚁物种丰富度的影响。结果我们发现,在我们采样的三个梯度之间,当地蚂蚁物种丰富度的模式有所不同。蚂蚁的物种丰富度随着沿两个样带的升高而线性增加,并在沿第三样带的中度升高时达到峰值。这表明基于来自单个样条线的数据的物种丰富度模式可能不会推广到更大的空间尺度。群落相似性的聚类分析表明,高海拔物种的集合与低海拔物种的集合大不相同。蚂蚁物种集合身份的主要变化与低海拔物种的变化大不相同。沿海拔梯度出现的蚂蚁物种身份的重大变化往往与优势植被的变化相吻合。区域物种丰富度(在此定义为在所有三个梯度组合中的高程带内唯一物种的总数),在所有三个梯度组合中的通带都趋于增加,并随海拔升高而增加。可用面积随着海拔的升高而减小。因此,面积与春季山区的蚂蚁物种丰富度呈负相关。平均7月最高和最低温度,7月降水量和年降水量共同解释了80%的蚂蚁物种丰富度变化。

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