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觅食生态学和体型大小对鸟类头骨形状的影响在系统发育的各个层次上都有所不同。

The Effects of Foraging Ecology and Allometry on Avian Skull Shape Vary across Levels of Phylogeny.

出版信息

Am Nat. 2022 Oct;200(4):E174-E188. doi: 10.1086/720745. Epub 2022 Aug 26.

Abstract

AbstractAvian skull shape diversity is classically thought to result from selection for structures that are well adapted for distinct ecological functions, but recent work has suggested that allometry is the dominant contributor to avian morphological diversity. If true, this hypothesis would overturn much conventional wisdom regarding the importance of form-function relationships in adaptive radiations, but it is possible that these results are biased by the low taxonomic levels of the clades that have been studied. Using 3D morphometric data from the skulls of a relatively old and ecologically diverse order of birds, the Charadriiformes (shorebirds and relatives), we found that foraging ecology explains more than two-thirds of the variation in skull shape across the clade. However, we also found support for the hypothesis that skull allometry evolves, contributing more to shape variation at the level of the family than the order. Allometry may provide an important source of shape variation on which selection can act over short timescales, but its potential to evolve complicates generalizations between clades. Foraging ecology remains a better predictor of avian skull shape over macroevolutionary timescales.

摘要

摘要

经典观点认为,鸟类头骨形状的多样性是由适应不同生态功能的结构选择所导致的,但最近的研究表明,尺度变化是鸟类形态多样性的主要贡献因素。如果这一假设成立,这将颠覆有关形态-功能关系在适应性辐射中重要性的许多传统观念,但也有可能这些结果受到研究的分支的低分类学水平的影响。本研究使用来自相对古老且生态多样化的鸟类目(涉禽及其亲缘类群)的头骨的 3D 形态计量数据,发现觅食生态解释了整个类群中头骨形状变化的三分之二以上。然而,我们也支持这样的假设,即头骨的尺度变化会进化,对家族水平的形状变化的贡献大于目水平。尺度变化可能为选择在短时间尺度上作用提供了一个重要的形状变化来源,但它的进化潜力使不同分支之间的概括变得复杂。在宏观进化时间尺度上,觅食生态仍然是鸟类头骨形状的更好预测因子。

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