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Dispersal ability determines the scaling properties of species abundance distributions: a case study using arthropods from the Azores

机译:分散能力决定物种丰度分布的缩放特性:使用亚速尔群岛节肢动物的案例研究

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摘要

Species abundance distributions (SAD) are central to the description of diversity and have played a major role in the development of theories of biodiversity and biogeography. However, most work on species abundance distributions has focused on one single spatial scale. Here we used data on arthropods to test predictions obtained with computer simulations on whether dispersal ability influences the rate of change of SADs as a function of sample size. To characterize the change of the shape of the SADs we use the moments of the distributions: the skewness and the raw moments. In agreement with computer simulations, low dispersal ability species generate a hump for intermediate abundance classes earlier than the distributions of high dispersal ability species. Importantly, when plotted as function of sample size, the raw moments of the SADs of arthropods have a power law pattern similar to that observed for the SAD of tropical tree species, thus we conjecture that this might be a general pattern in ecology. The existence of this pattern allows us to extrapolate the moments and thus reconstruct the SAD for larger sample sizes using a procedure borrowed from the field of image analysis based on scaled discrete Tchebichef moments and polynomials.
机译:物种丰度分布(SAD)对于描述多样性至关重要,并且在生物多样性和生物地理学理论的发展中发挥了重要作用。但是,大多数有关物种丰度分布的工作都集中在一个单一的空间尺度上。在这里,我们使用节肢动物的数据来测试通过计算机模拟获得的预测,这些预测是关于分散能力是否会影响SAD随样本量变化的速率。为了表征SAD形状的变化,我们使用分布的矩:偏度和原始矩。与计算机模拟相一致,低扩散能力的物种比高扩散能力的物种的分布更早地产生中等丰度类别的驼峰。重要的是,当将其绘制为样本量的函数时,节肢动物的SAD的原始矩具有类似于热带树木物种SAD所观察到的幂定律模式,因此我们推测这可能是生态学中的一般模式。这种模式的存在使我们可以外推矩,从而使用从图像分析领域借来的基于比例化的离散Tchebichef矩和多项式的程序来重构较大样本量的SAD。

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