Institute of Experimental Pathology (ZMBE), University of Münster, Germany.
Brandenburg Medical School (MHB), Neuruppin, Germany.
Genome Biol Evol. 2019 Jan 1;11(1):11-16. doi: 10.1093/gbe/evy257.
The order Lagomorpha unifies pikas (Ochotonidae) and the hares plus rabbits (Leporidae). Phylogenetic reconstructions of the species within Leporidae based on traditional morphological or molecular sequence data provide support for conflicting hypotheses. The retroposon presence/absence patterns analyzed in this study revealed strong support for the broadly accepted splitting of lagomorphs into ochotonids and leporids with Pronolagus as the first divergence in the leporid tree. Furthermore, the retroposon presence/absence patterns nested the rare volcano rabbit, Romerolagus diazi, within an unresolved network of deeper leporid relationships and provide the first homoplasy-free image of incomplete lineage sorting and/or ancestral hybridization/introgression in rapidly radiated Leporidae. At the same time, the strongest retroposon presence/absence signal supports the volcano rabbit as a separate branch between the Pronolagus junction and a unified cluster of the remaining leporids.
兔形目将鼠兔(鼠兔科)和野兔(兔科)统一起来。基于传统形态学或分子序列数据对兔科内物种进行的系统发育重建为相互矛盾的假说提供了支持。本研究分析的反转录转座子存在/缺失模式强烈支持将兔形目分为鼠兔科和兔科,而普氏原羚是兔科树中最早的分歧。此外,反转录转座子存在/缺失模式将稀有的火山兔(Romerolagus diazi)嵌套在兔科更深层次关系的未解决网络中,并提供了快速辐射的兔科中不完全谱系分选和/或祖先杂交/基因渗入的首个无同功现象的图像。同时,最强的反转录转座子存在/缺失信号支持火山兔作为普氏原羚分支和其余兔科统一聚类之间的一个单独分支。