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Retroposed Elements as Archives for the Evolutionary History of Placental Mammals

机译:作为胎盘哺乳动物进化史档案的增补元素

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摘要

Reconstruction of the placental mammalian (eutherian) evolutionary tree has undergone diverse revisions, and numerous aspects remain hotly debated. Initial hierarchical divisions based on morphology contained many misgroupings due to features that evolved independently by similar selection processes. Molecular analyses corrected many of these misgroupings and the superordinal hierarchy of placental mammals was recently assembled into four clades. However, long or rapid evolutionary periods, as well as directional mutation pressure, can produce molecular homoplasies, similar characteristics lacking common ancestors. Retroposed elements, by contrast, integrate randomly into genomes with negligible probabilities of the same element integrating independently into orthologous positions in different species. Thus, presence/absence analyses of these elements are a superior strategy for molecular systematics. By computationally scanning more than 160,000 chromosomal loci and judiciously selecting from only phylogenetically informative retroposons for experimental high-throughput PCR applications, we recovered 28 clear, independent monophyly markers that conclusively verify the earliest divergences in placental mammalian evolution. Using tests that take into account ancestral polymorphisms, multiple long interspersed elements and long terminal repeat element insertions provide highly significant evidence for the monophyletic clades Boreotheria (synonymous with Boreoeutheria), Supraprimates (synonymous with Euarchontoglires), and Laurasiatheria. More importantly, two retropositions provide new support for a prior scenario of early mammalian evolution that places the basal placental divergence between Xenarthra and Epitheria, the latter comprising all remaining placentals. Due to its virtually homoplasy-free nature, the analysis of retroposon presence/absence patterns avoids the pitfalls of other molecular methodologies and provides a rapid, unequivocal means for revealing the evolutionary history of organisms.
机译:胎盘哺乳动物进化树的重建经历了各种各样的修改,许多方面仍然引起了激烈的争论。基于形态的初始分层划分包含许多错误分组,这归因于由相似选择过程独立演化的特征。分子分析纠正了许多这样的错位,最近胎盘哺乳动物的上等阶层被组装成四个进化枝。然而,长期或快速的进化时期,以及定向突变的压力,可能会产生分子同质性,缺乏共同祖先的相似特征。相比之下,改造后的元素随机整合到基因组中,而同一元素的概率可忽略不计,独立整合到不同物种的直系同源位置中。因此,这些元素的存在/不存在分析是分子系统学的上乘策略。通过计算扫描超过160,000个染色体位点并从仅系统发育信息丰富的逆向选择子中明智地选择用于实验高通量PCR应用,我们回收了28个清晰,独立的单系标记,最终证实了胎盘哺乳动物进化的最早差异。使用考虑祖先多态性的测试,多个长穿插元素和长末端重复元素插入为单系进化枝Boorotheria(与Boreoeutheria的同义词),Suprimprimates(与Euarchontoglires的同义词)和Laurasiatheria提供了非常重要的证据。更重要的是,两次翻新为先前的哺乳动物早期进化场景提供了新的支持,该场景将基础胎盘在Xenarthra和Epitheria之间分散,后者包括所有剩余的胎盘。由于其实际上无同质性,对逆转录子存在/不存在模式的分析避免了其他分子方法的陷阱,并提供了一种快速,明确的方法来揭示生物的进化史。

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