Department of Ecology and Genetics, University of Oulu, Oulu, Finland.
Mol Ecol. 2018 Apr;27(7):1681-1695. doi: 10.1111/mec.14564. Epub 2018 Apr 17.
Systematists and taxonomists have benefited greatly from the emergence of molecular methods. Species identification has become straightforward through DNA barcoding and the rapid build-up of massive DNA barcode reference libraries. In animals, mitonuclear discordance can significantly complicate the process of species identification and delimitation. The causes of mitonuclear discordance are either biological (e.g., introgression, incomplete lineage sorting, horizontal gene transfer androgenesis) or induced by operational factors (e.g., human error with specimen misidentification or incorrect species delimitation). Moreover, endosymbionts may play an important role in promoting fixation of mitochondrial genomes. Here, we study the mitonuclear discordance of wolf spiders species (Lycosidae) (independent cases from Alopecosa aculeata and Pardosa pullata groups) that share identical COI DNA barcodes. We approached the case utilizing double-digest restriction site-associated DNA sequencing (ddRADseq) to obtain and analyse genomic-scale data. Our results suggest that the observed cases of mitonuclear discordance are not due to operational reasons but result from biological processes. Further analysis indicated introgression and that incomplete lineage sorting is unlikely to have been responsible for the observed discrepancy. Additional survey of endosymbionts provided ideas on further research and their role in shaping mitochondrial DNA distribution patterns. Thus, ddRADseq grants an efficient way to study the taxonomy of problematic groups with insight into underlying evolutionary processes.
系统发育学家和分类学家从分子方法的出现中受益匪浅。通过 DNA 条形码和大量 DNA 条形码参考文库的快速建立,物种鉴定变得简单明了。在动物中,线粒体与核基因组的不匹配会极大地复杂化物种鉴定和界定的过程。线粒体与核基因组的不匹配的原因要么是生物学的(例如,基因渗入、不完全谱系分选、水平基因转移和孤雌生殖),要么是由操作因素引起的(例如,标本鉴定错误或不正确的物种界定导致的人为错误)。此外,内共生体可能在促进线粒体基因组固定方面发挥重要作用。在这里,我们研究了共享相同 COI DNA 条形码的狼蛛物种(狼蛛科)(来自 Alopecosa aculeata 和 Pardosa pullata 组的独立案例)的线粒体与核基因组的不匹配。我们利用双酶切限制位点相关 DNA 测序(ddRADseq)来获取和分析基因组规模的数据来处理这个案例。我们的结果表明,观察到的线粒体与核基因组的不匹配不是由于操作原因造成的,而是由生物学过程引起的。进一步的分析表明,基因渗入和不完全谱系分选不太可能是造成观察到的差异的原因。对内共生体的进一步调查为进一步的研究及其在塑造线粒体 DNA 分布模式方面的作用提供了思路。因此,ddRADseq 为研究具有潜在进化过程的有问题的群体的分类学提供了一种有效的方法。