水鸟的翅膀形状:与行为、栖息地、迁徙和系统发育趋同相关的形态计量模式。

IF 2.2 4区 生物学 Q2 BIOLOGY
Integrative Organismal Biology Pub Date : 2021-05-17 eCollection Date: 2021-01-01 DOI:10.1093/iob/obab011
Stephanie L Baumgart, Paul C Sereno, Mark W Westneat
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引用次数: 10

摘要

翅膀形状在鸟类和其他动力飞行动物的飞行功能中起着至关重要的作用,并与飞行性能、迁徙距离和飞行过程中产生升力的生物力学有关。鸟类的翅膀形状和飞行力学也被证明与一般的觅食行为和栖息地选择有关。我们的目的是确定水鸟的翅膀形状是否与各种功能和生态特征相关,水鸟是一个由它们的沿海和水生栖息地联合起来的功能和生态多样性组合。我们采用几何形态计量学方法对一些水鸟展开的翅膀进行了研究,以寻找翅膀形状与觅食行为、栖息地和迁徙模式之间的进化模式。我们在多个进化支中发现了高展弦比和低展弦比翼形趋同进化的有力证据。觅食行为也始终与翅膀形状表现出很强的进化相关性。相比之下,水鸟的栖息地、迁徙和飞行方式与翅膀形状没有显著的相关性。虽然翼形对空中飞行功能至关重要,但其与栖息地和周期性运动需求(如迁徙)的关系是复杂的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wing Shape in Waterbirds: Morphometric Patterns Associated with Behavior, Habitat, Migration, and Phylogenetic Convergence.

Wing shape plays a critical role in flight function in birds and other powered fliers and has been shown to be correlated with flight performance, migratory distance, and the biomechanics of generating lift during flight. Avian wing shape and flight mechanics have also been shown to be associated with general foraging behavior and habitat choice. We aim to determine if wing shape in waterbirds, a functionally and ecologically diverse assemblage united by their coastal and aquatic habitats, is correlated with various functional and ecological traits. We applied geometric morphometric approaches to the spread wings of a selection of waterbirds to search for evolutionary patterns between wing shape and foraging behavior, habitat, and migratory patterns. We found strong evidence of convergent evolution of high and low aspect ratio wing shapes in multiple clades. Foraging behavior also consistently exhibits strong evolutionary correlations with wing shape. Habitat, migration, and flight style, in contrast, do not exhibit significant correlation with wing shape in waterbirds. Although wing shape is critical to aerial flight function, its relationship to habitat and periodic locomotor demands such as migration is complex.

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来源期刊
CiteScore
3.70
自引率
6.70%
发文量
48
审稿时长
20 weeks
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