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鸟类骨笛的比较形态学

Comparative morphology of the avian bony columella.

机构信息

Department of Physiology and Biophysics, University of Colorado School of Medicine, Aurora, Colorado, USA.

Department of Zoology, Denver Museum of Nature and Science, Denver, Colorado, USA.

出版信息

Anat Rec (Hoboken). 2024 May;307(5):1735-1763. doi: 10.1002/ar.25278. Epub 2023 Jun 26.

Abstract

In birds, the columella is the only bony element of the sound conducting apparatus, conveying vibrations of the cartilaginous extracolumella to the fluid of the inner ear. Although avian columellar morphology has attracted some attention over the past century, it nonetheless remains poorly described in the literature. The few existing studies mostly focus on morphological descriptions in relatively few taxa, with no taxonomically broad surveys yet published. Here we use observations of columellae from 401 extant bird species to provide a comprehensive survey of columellar morphology in a phylogenetic context. We describe the columellae of several taxa for the first time and identify derived morphologies characterizing higher-level clades based on current phylogenies. In particular, we identify a derived columellar morphology diagnosing a major subclade of Accipitridae. Within Suliformes, we find that Fregatidae, Sulidae, and Phalacrocoracidae share a derived morphology that is absent in Anhingidae, suggesting a secondary reversal. Phylogenetically informed comparisons allow recognition of instances of homoplasy, including the distinctive bulbous columellae in suboscine passerines and taxa belonging to Eucavitaves, and bulging footplates that appear to have evolved at least twice independently in Strigiformes. We consider phylogenetic and functional factors influencing avian columellar morphology, finding that aquatic birds possess small footplates relative to columellar length, possibly related to hearing function in aquatic habitats. By contrast, the functional significance of the distinctive bulbous basal ends of the columellae of certain arboreal landbird taxa remains elusive.

摘要

在鸟类中,听小骨是传音装置中唯一的骨性结构,将软骨外听小骨的振动传递到内耳的液体中。尽管过去一个世纪以来鸟类听小骨形态已经引起了一些关注,但在文献中仍然描述得不够充分。少数现有的研究主要集中在少数几个分类群的形态描述上,尚未发表过分类广泛的调查。在这里,我们使用 401 种现存鸟类的听小骨观察结果,在系统发育背景下对听小骨形态进行了全面调查。我们首次描述了几个分类群的听小骨,并根据当前的系统发育确定了表征高级分类群的衍生形态。特别是,我们确定了一种衍生的听小骨形态,可以诊断出 Accipitridae 的一个主要亚科。在佛法僧目鸟类中,我们发现军舰鸟科、鹈鹕科和鸊鷉科具有衍生的形态,而蛇鹈科没有,这表明存在次生反转。基于系统发育的比较可以识别出趋同进化的实例,包括亚鸣禽中独特的球状听小骨和属于 Eucavitaves 的分类群,以及在Strigiformes 中似乎独立进化了至少两次的膨出的足板。我们考虑了影响鸟类听小骨形态的系统发育和功能因素,发现水鸟的足板相对于听小骨长度较小,这可能与水生栖息地的听觉功能有关。相比之下,某些树栖陆鸟分类群的听小骨基部独特的球状末端的功能意义仍然难以捉摸。

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