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Sequencing of the complete mitochondrial genome of the common raven Corvus corax (Aves: Corvidae) confirms mitogenome-wide deep lineages and a paraphyletic relationship with the Chihuahuan raven C. cryptoleucus

机译:常见乌鸦Corvus corax(Aves:Corvidae)的完整线粒体基因组测序证实了全有丝分裂基因组的深谱系以及与奇瓦瓦州乌鸦C.ryptoleucus的亲缘关系

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摘要

Previous studies based on single mitochondrial markers have shown that the common raven (Corvus corax) consists of two highly diverged lineages that are hypothesised to have undergone speciation reversal upon secondary contact. Furthermore, common ravens are paraphyletic with respect to the Chihuahuan raven (C. cryptoleucus) based on mitochondrial DNA (mtDNA). Here we explore the causes of mtDNA paraphyly by sequencing whole mitochondrial genomes of 12 common ravens from across the Northern Hemisphere, in addition to three Chihuahuan ravens and one closely related brown-necked raven (C. ruficollis) using a long-range PCR protocol. Our raven mitogenomes ranged between 16925–16928 bp in length. GC content varied from 43.3% to 43.8% and the 13 protein coding genes, two rRNAs and 22 tRNAs followed a standard avian mitochondrial arrangement. The overall divergence between the two common raven clades was 3% (range 0.3–5.8% in 16 regions including the protein coding genes, rRNAs and the control region). Phylogenies constructed from whole mitogenomes recovered the previously found mitochondrial sister relationship between the common raven California clade and the Chihuahuan raven (overall divergence 1.1%), which strengthens the hypothesis that mtDNA paraphyly in the common raven results from speciation reversal of previously distinct Holarctic and California lineages.
机译:先前基于单个线粒体标记的研究表明,普通乌鸦(Corvus corax)由两个高度分散的谱系组成,这些谱系被认为在二次接触后发生了物种逆转。此外,相对于基于线粒体DNA(mtDNA)的奇瓦瓦州乌鸦(C. cryptoleucus),普通乌鸦具有寄生性。在这里,我们通过对北半球12条常见乌鸦的线粒体全基因组进行测序,探索了线粒体DNA的原因,此外,还使用长距离PCR协议对3只奇瓦瓦州乌鸦和1个密切相关的褐颈乌鸦(C. ruficollis)进行了测序。我们的乌鸦有丝分裂基因组的长度在16925-16928 bp之间。 GC含量从43.3%到43.8%不等,并且13种蛋白质编码基因,两个rRNA和22个tRNA遵循标准的禽线粒体排列。两个常见的乌鸦进化枝之间的总体差异为3%(在16个区域(蛋白质编码基因,rRNA和控制区域)的范围为0.3-5.8%)。由整个有丝分裂基因组构建的系统发育学恢复了先前发现的常见乌鸦加州进化枝和奇瓦瓦州乌鸦之间的线粒体姊妹关系(总体差异为1.1%),这加强了这一假设,即普通乌鸦中mtDNA副生的原因是先前截然不同的Holarctic和California的物种形成反转。血统。

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