Molecular Evolution, Department of Cell and Molecular Biology, Science for Life Laboratory, Uppsala University, Husargatan 3, 751 24 Uppsala, Sweden.
Lab Genome Dynamics, Department Cell & Developmental Biology, Center for Anatomy and Cell Biology, Medical University of Vienna, Schwarzspanierstraße 17, 1090 Vienna, Austria.
Mol Phylogenet Evol. 2023 Mar;180:107683. doi: 10.1016/j.ympev.2022.107683. Epub 2022 Dec 24.
Hybridization and the consequent introgression of genomic elements is an important source of genetic diversity for biological lineages. This is particularly evident in young clades in which hybrid incompatibilities are still incomplete and mixing between species is more likely to occur. Drosophila paulistorum, a representative of the Neotropical Drosophila willistoni subgroup, is a classic model of incipient speciation. The species is divided into six semispecies that show varying degrees of pre- and post-mating incompatibility with each other. In the present study, we investigate the mitochondrial evolutionary history of D. paulistorum and the willistoni subgroup. For that, we perform phylogenetic and comparative analyses of the complete mitochondrial genomes and draft nuclear assemblies of 25 Drosophila lines of the willistoni and saltans species groups. Our results show that the mitochondria of D. paulistorum are polyphyletic and form two non-sister clades that we name α and β. Identification and analyses of nuclear mitochondrial insertions further reveal that the willistoni subgroup has an α-like mitochondrial ancestor and strongly suggest that both the α and β mitochondria of D. paulistorum were acquired through introgression from unknown fly lineages of the willistoni subgroup. We also uncover multiple mitochondrial introgressions across D. paulistorum semispecies and generate novel insight into the evolution of the species.
杂交和随之而来的基因组元素的渐渗是生物谱系遗传多样性的重要来源。这在年轻的进化枝中尤为明显,因为杂交不相容性尚未完全形成,物种之间的混合更容易发生。Drosophila paulistorum 是新热带 Drosophila willistoni 亚组的代表,是正在进行物种形成的经典模式生物。该物种分为六个半种,彼此之间表现出不同程度的交配前和交配后不相容性。在本研究中,我们研究了 D. paulistorum 和 willistoni 亚组的线粒体进化历史。为此,我们对 willistoni 和 saltans 物种组的 25 个 Drosophila 品系的完整线粒体基因组和核组装草案进行了系统发育和比较分析。我们的结果表明,D. paulistorum 的线粒体是多系的,形成了两个非姐妹类群,我们分别命名为α和β。核线粒体插入的鉴定和分析进一步表明,willistoni 亚组具有α样的线粒体祖先,强烈表明 D. paulistorum 的α和β线粒体都是通过与 willistoni 亚组未知的蝇系的渐渗而获得的。我们还在 D. paulistorum 半种中发现了多个线粒体渐渗,并对物种的进化产生了新的认识。