Institute of Experimental Pathology, ZMBE, University of Münster, 48149 Münster, Germany.
School of Biology and Environmental Science, University College Dublin, Belfield, D04 V1W8 Dublin, Ireland.
Genes (Basel). 2022 Apr 26;13(5):766. doi: 10.3390/genes13050766.
Relationships among laurasiatherian clades represent one of the most highly disputed topics in mammalian phylogeny. In this study, we attempt to disentangle laurasiatherian interordinal relationships using two independent genome-level approaches: (1) quantifying retrotransposon presence/absence patterns, and (2) comparisons of exon datasets at the levels of nucleotides and amino acids. The two approaches revealed contradictory phylogenetic signals, possibly due to a high level of ancestral incomplete lineage sorting. The positions of Eulipotyphla and Chiroptera as the first and second earliest divergences were consistent across the approaches. However, the phylogenetic relationships of Perissodactyla, Cetartiodactyla, and Ferae, were contradictory. While retrotransposon insertion analyses suggest a clade with Cetartiodactyla and Ferae, the exon dataset favoured Cetartiodactyla and Perissodactyla. Future analyses of hitherto unsampled laurasiatherian lineages and synergistic analyses of retrotransposon insertions, exon and conserved intron/intergenic sequences might unravel the conflicting patterns of relationships in this major mammalian clade.
劳亚兽类各演化支之间的关系是哺乳动物系统发育中最具争议的话题之一。在这项研究中,我们试图利用两种独立的全基因组方法来厘清劳亚兽类的目间关系:(1)量化反转录转座子的存在/缺失模式;(2)核苷酸和氨基酸水平的外显子数据集比较。这两种方法揭示了相互矛盾的系统发育信号,可能是由于高度的祖先不完全谱系分选。两种方法都一致表明,真兽类和翼手目是最早分歧的第一和第二支。然而,奇蹄目、偶蹄目和食肉目之间的系统发育关系则相互矛盾。虽然反转录转座子插入分析表明有一个包含偶蹄目和食肉目的分支,但外显子数据集则支持偶蹄目和奇蹄目。对迄今未取样的劳亚兽类谱系进行进一步分析,以及反转录转座子插入、外显子和保守内含子/基因间序列的协同分析,可能会揭示这个主要的哺乳动物类群中相互矛盾的关系模式。