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Altriciality and the Evolution of Toe Orientation in Birds

机译:鸟类的趾高音和脚趾方向的演变

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摘要

Specialized morphologies of bird feet have evolved several times independently as different groups have become zygodactyl, semi-zygodactyl, heterodactyl, pamprodactyl or syndactyl. Birds have also convergently evolved similar modes of development, in a spectrum that goes from precocial to altricial. Using the new context provided by recent molecular phylogenies, we compared the evolution of foot morphology and modes of development among extant avian families. Variations in the arrangement of toes with respect to the anisodactyl ancestral condition have occurred only in altricial groups. Those groups represent four independent events of super-altriciality and many independent transformations of toe arrangements (at least four zygodactyl, three semi-zygodactyl, one heterodactyl, one pamprodactyl group, and several syndactyl). We propose that delayed skeletal maturation due to altriciality facilitates the epigenetic influence of embryonic muscular activity over developing toes, allowing for repeated evolution of innovations in their morphology.
机译:鸟脚的特殊形态已经独立地进化了数次,因为不同的基团已变成合半乳糖,半合半乳糖,异双乳糖,对乙酰半乳糖或Syndactyl。鸟类也在从早熟到幼年的范围内,趋同地进化了相似的发育方式。使用最新的分子系统学提供的新背景,我们比较了现有鸟类家族中足部形态的演变和发育方式。趾甲相对于异an基祖先条件的排列变化仅在贵族组中发生过。这些基团代表超独立性的四个独立事件和脚趾排列的许多独立转换(至少四个合子基,三个半合子基,一个杂二基,一个amp丙基和几个同聚基)。我们建议由于骨骼的延迟骨骼成熟,有利于胚胎肌肉活动对发育中的脚趾的表观遗传学影响,允许其形态创新的反复进化。

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