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黄眉鹀(Emberiza chrysophrys,雀形目:鹀科)的线粒体全基因组及鹀属内的系统发育关系。

The complete mitochondrial genome of the yellow-browed bunting, Emberiza chrysophrys (Passeriformes: Emberizidae), and phylogenetic relationships within the genus Emberiza.

作者信息

Ren Qiongqiong, Yuan Jian, Ren Liqian, Zhang Liqin, Zhang Lei, Jiang Lan, Chen Dongsheng, Kan Xianzhao, Zhang Baowei

机构信息

The Institute of Bioinformatics, College of Life Sciences, Anhui Normal University, Wuhu 241000, People's Republic of China.

出版信息

J Genet. 2014 Dec;93(3):699-707. doi: 10.1007/s12041-014-0428-2.

Abstract

Mitochondrial genomes have proved to be powerful tools in resolving phylogenetic relationships. Emberiza chrysophrys (least concern species: IUCN 2013) is a passerine bird in the bunting family, Emberizidae. The complete mitochondrial genome of E. chrysophrys was sequenced. This circular mitochondrial genome was 16,803 bp in length, with an A+T content of 52.26%, containing 13 protein-coding genes (PCGs), two rRNAs, 22 tRNAs and a putative control region (CR). The CR of E. chrysophrys was divided into three conserved domains. Six conserved sequence boxes in the central conserved domain II were identified as F, E, D, C, b and B. An obvious positive AT-skew and negative GC-skew bias were found for all 28 genes encoded by the H strand, whereas it was the reverse in the remaining nine genes encoded by the L strand. Remarkable rate heterogeneity was present in the mitochondrial genome of E. chrysophrys. Notably, unusual slow rate of evolution in the mitochondrial CR of E. chrysophrys was detected, which is rarely seen in other birds. Phylogenetic analyses were carried out based on 13 PCGs that showed E. pusilla was the sister group of E. rustica, and the monophyly of Emberiza was established.

摘要

线粒体基因组已被证明是解决系统发育关系的有力工具。黄眉鹀(无危物种:世界自然保护联盟2013年)是鹀科的一种雀形目鸟类。对黄眉鹀的完整线粒体基因组进行了测序。这个环状线粒体基因组长度为16,803碱基对,A+T含量为52.26%,包含13个蛋白质编码基因(PCGs)、两个核糖体RNA、22个转运RNA和一个假定的控制区(CR)。黄眉鹀的控制区分为三个保守结构域。在中央保守结构域II中的六个保守序列框被鉴定为F、E、D、C、b和B。对于由重链编码的所有28个基因,发现明显的正AT偏斜和负GC偏斜,而由轻链编码的其余九个基因则相反。黄眉鹀的线粒体基因组存在显著的速率异质性。值得注意的是,检测到黄眉鹀线粒体控制区异常缓慢的进化速率,这在其他鸟类中很少见。基于13个蛋白质编码基因进行了系统发育分析,结果表明小鹀是白眉鹀的姐妹群,并确立了鹀属的单系性。

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