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Forelimb proportions and the evolutionary radiation of neornithes

机译:前肢的比例和新星的进化辐射

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摘要

Analysis of a comprehensive dataset demonstrates that the brachial index (BI=humerus length/ulna length) of modern birds (Neornithes) varies significantly between clades at all taxonomic levels, yet is strongly correlated with recent phylogenetic hypotheses. Variance in BI at the infraclass level is low, but increases rapidly during the proposed major radiation of neornithines in the Palaeocene and Eocene. Although a BI of greater than 1 is primitive for Neornithes, more basal groups of Mesozoic birds (Confuciusornithidae and some members of the diverse Enantiornithidae) had BIs comparable with those of 'higher' modern clades. It is possible that occupation of ecological niches by these Mesozoic clades precluded the divergence of some groups of neornithines until after the Cretaceous-Tertiary boundary. We suggest that with further analysis and data collection the relationships between flight behaviour, ecology and BI can be determined. Hence, BI may provide a useful tool for characterizing the ecology of fossil birds.
机译:对综合数据集的分析表明,现代鸟类(Neornithes)的臂臂指数(BI =肱骨长度/尺骨长度)在所有分类学级别的进化枝之间均存在显着差异,但与最新的系统发育假设密切相关。在下层级别的BI中的方差较低,但是在建议的新新世和始新世的主要的新鸟氨酸辐射期间,BI的变化迅速增加。尽管对于Neornithes而言,BI大于1是原始的,但中生代鸟类的基础群(孔子鸟科和不同的Enantiornithidae的某些成员)的BI可以与“高级”进化枝相比。这些中生代对生态位的占领有可能阻止了一些新的鸟氨酸组之间的分歧,直到白垩纪-第三纪界之后。我们建议,通过进一步的分析和数据收集,可以确定飞行行为,生态学和商务智能之间的关系。因此,BI可能为表征化石鸟类的生态学提供有用的工具。

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