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Interspecific geographic range size-body size relationship and the diversification dynamics of Neotropical furnariid birds

机译:三角形地理范围尺寸关系与新营养家具鸟类的多样化动态

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摘要

Among the earliest macroecological patterns documented, is the range and body size relationship, characterized by a minimum geographic range size imposed by the species' body size. This boundary for the geographic range size increases linearly with body size and has been proposed to have implications in lineages evolution and conservation. Nevertheless, the macroevolutionary processes involved in the origin of this boundary and its consequences on lineage diversification have been poorly explored. We evaluate the macroevolutionary consequences of the difference (hereafter the distance) between the observed and the minimum range sizes required by the species' body size, to untangle its role on the diversification of a Neotropical species-rich bird clade using trait-dependent diversification models. We show that speciation rate is a positive hump-shaped function of the distance to the lower boundary. The species with highest and lowest distances to minimum range size had lower speciation rates, while species close to medium distances values had the highest speciation rates. Further, our results suggest that the distance to the minimum range size is a macroevolutionary constraint that affects the diversification process responsible for the origin of this macroecological pattern in a more complex way than previously envisioned.
机译:在记录的最早的宏观生态学模式中,是范围和体尺寸关系,其特征在于物种体尺寸施加的最小地理范围大小。地理范围大小的该边界与体尺寸线性增加,并且已经提出在谱系中具有影响的进化和保护。尽管如此,探索了涉及该边界起源及其对血统多样化后果的宏观调度过程。我们评估所观察到的差异和物种体型所需的最小范围大小之间的差异(以下距离)的差异后果,以利用特质依赖多样化模型来解开其对富含新鸟类鸟类的多样化的作用。我们表明,物种率是与下边界的距离的正驼峰形函数。最高和最小距离到最小范围大小的物种具有较低的物种速率,而靠近中等距离值的物种具有最高的物种速率。此外,我们的结果表明,到最小范围大小的距离是宏观调度约束,它影响了与先前设想的更复杂的方式负责这种宏观学模式的起源的多样化过程。

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