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Whole-genome analyses resolve early branches in the tree of life of modern birds

机译:全基因组分析解决了现代鸟类生命树中的早期分支问题

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摘要

To better determine the history of modern birds, we performed a genome-scale phylogenetic analysis of 48 species representing all orders of Neoaves using phylogenomic methods created to handle genome-scale data. We recovered a highly resolved tree that confirms previously controversial sister or close relationships. We identified the first divergence in Neoaves, two groups we named Passerea and Columbea, representing independent lineages of diverse and convergently evolved land and water bird species. Among Passerea, we infer the common ancestor of core landbirds to have been an apex predator and confirm independent gains of vocal learning. Among Columbea, we identify pigeons and flamingoes as belonging to sister clades. Even with whole genomes, some of the earliest branches in Neoaves proved challenging to resolve, which was best explained by massive protein-coding sequence convergence and high levels of incomplete lineage sorting that occurred during a rapid radiation after the Cretaceous-Paleogene mass extinction event about 66 million years ago.
机译:为了更好地确定现代鸟类的历史,我们使用创建用于处理基因组规模数据的系统植物学方法对代表Neoaves所有阶的48种物种进行了基因组规模的系统发育分析。我们回收了一棵高度分辨的树,证实了以前有争议的姐妹或亲密关系。我们确定了Neoaves中的第一个分歧,我们将其命名为Passerea和Columbea,这两个代表了多样化和融合进化的陆地和水禽物种的独立世系。在Passerea中,我们推断核心陆鸟的共同祖先是先头掠食者,并确认了独立的声音学习收益。在哥伦布中,我们将鸽子和火烈鸟鉴定为属于姐妹进化枝。即使具有完整的基因组,Neoaves的一些最早分支也证明难以分离,这最好用大量的蛋白质编码序列收敛和高水平的不完整谱系分类来解释,这些现象在白垩纪-古生物大规模灭绝事件发生后的快速辐射过程中发生。 6600万年前。

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