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黑鸢和矛隼(鸟类,鹰形目)的线粒体基因组:序列、结构及系统发育分析

The Mitochondrial Genomes of Aquila fasciata and Buteo lagopus (Aves, Accipitriformes): Sequence, Structure and Phylogenetic Analyses.

作者信息

Jiang Lan, Chen Juan, Wang Ping, Ren Qiongqiong, Yuan Jian, Qian Chaoju, Hua Xinghong, Guo Zhichun, Zhang Lei, Yang Jianke, Wang Ying, Zhang Qin, Ding Hengwu, Bi De, Zhang Zongmeng, Wang Qingqing, Chen Dongsheng, Kan Xianzhao

机构信息

The Institute of Bioinformatics, College of Life Sciences, Anhui Normal University, Wuhu, Anhui, China; The Provincial Key Laboratory of the Conservation and Exploitation Research of Biological Resources in Anhui, Wuhu, Anhui, China.

The Institute of Bioinformatics, College of Life Sciences, Anhui Normal University, Wuhu, Anhui, China.

出版信息

PLoS One. 2015 Aug 21;10(8):e0136297. doi: 10.1371/journal.pone.0136297. eCollection 2015.

Abstract

The family Accipitridae is one of the largest groups of non-passerine birds, including 68 genera and 243 species globally distributed. In the present study, we determined the complete mitochondrial sequences of two species of accipitrid, namely Aquila fasciata and Buteo lagopus, and conducted a comparative mitogenome analysis across the family. The mitogenome length of A. fasciata and B. lagopus are 18,513 and 18,559 bp with an A + T content of 54.2% and 55.0%, respectively. For both the two accipitrid birds mtDNAs, obvious positive AT-skew and negative GC-skew biases were detected for all 12 PCGs encoded by the H strand, whereas the reverse was found in MT-ND6 encoded by the L strand. One extra nucleotide'C'is present at the position 174 of MT-ND3 gene of A. fasciata, which is not observed at that of B. lagopus. Six conserved sequence boxes in the Domain II, named boxes F, E, D, C, CSBa, and CSBb, respectively, were recognized in the CRs of A. fasciata and B. lagopus. Rates and patterns of mitochondrial gene evolution within Accipitridae were also estimated. The highest dN/dS was detected for the MT-ATP8 gene (0.32493) among Accipitridae, while the lowest for the MT-CO1 gene (0.01415). Mitophylogenetic analysis supported the robust monophyly of Accipitriformes, and Cathartidae was basal to the balance of the order. Moreover, we performed phylogenetic analyses using two other data sets (two mitochondrial loci, and combined nuclear and mitochondrial loci). Our results indicate that the subfamily Aquilinae and all currently polytypic genera of this subfamily are monophyletic. These two novel mtDNA data will be useful in refining the phylogenetic relationships and evolutionary processes of Accipitriformes.

摘要

鹰科是最大的非雀形目鸟类群体之一,全球分布着68个属和243个物种。在本研究中,我们测定了两种鹰科鸟类,即白眼鵟鹰和矛隼的完整线粒体序列,并对整个鹰科进行了线粒体基因组比较分析。白眼鵟鹰和矛隼的线粒体基因组长度分别为18,513和18,559 bp,A + T含量分别为54.2%和55.0%。对于这两种鹰科鸟类的线粒体DNA,由重链编码的所有12个PCG均检测到明显的正AT偏斜和负GC偏斜,而由轻链编码的MT-ND6则相反。在白眼鵟鹰的MT-ND3基因的第174位存在一个额外的核苷酸“C”,而在矛隼中未观察到。在白眼鵟鹰和矛隼的CRs中识别出了结构域II中的六个保守序列框,分别命名为框F、E、D、C、CSBa和CSBb。还估计了鹰科内线粒体基因的进化速率和模式。在鹰科中,MT-ATP8基因的dN/dS最高(0.32493),而MT-CO1基因的dN/dS最低(0.01415)。线粒体系统发育分析支持了鹰形目的强烈单系性,美洲鹫科在该目的其余部分之前。此外,我们使用另外两个数据集(两个线粒体基因座以及核基因座和线粒体基因座的组合)进行了系统发育分析。我们的结果表明,鹰亚科以及该亚科所有目前的多型属都是单系的。这两个新的线粒体DNA数据将有助于完善鹰形目的系统发育关系和进化过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d96/4546579/03a2b6c04846/pone.0136297.g001.jpg

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