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属(鸟类,雀形目)的比较线粒体基因组学及其系统发育意义。

Comparative mitogenomics of the genus (Aves, Passeriformes) and its phylogenetic implications.

作者信息

Yang Chao, Du Xiaojuan, Liu Yuxin, Yuan Hao, Wang Qingxiong, Hou Xiang, Gong Huisheng, Wang Yan, Huang Yuan, Li Xuejuan, Ye Haiyan

机构信息

College of Life Sciences, Shaanxi Normal University, Xi'an 710062, China Shaanxi Institute of Zoology Xi'an China.

Shaanxi Institute of Zoology, Xi'an 710032, China Shaanxi Normal University Xi'an China.

出版信息

Zookeys. 2022 Jul 1;1109:49-65. doi: 10.3897/zookeys.1109.81125. eCollection 2022.

Abstract

The genus belongs to Motacillidae (Passeriformes), where mitochondrial features are poorly understood and phylogeny is controversial. Whole mitochondrial genome (mitogenome) data and large taxon sampling are considered to be ideal strategies to obtain this information. We generated four complete mitogenomes of , , and , and made comparative analyses of species combined with mitogenome data from GenBank, and then reconstructed phylogenetic trees based on 37 mitochondrial genes. The mitogenomes of four mitogenome sequences exhibited the same gene order observed in most Passeriformes species. Comparative analyses were performed among all six sampled mitogenomes. The complete mitogenomes showed A-skew and C-skew. Most protein-coding genes (PCGs) start with an ATG codon and terminate with a TAA codon. The secondary structures of RNAs were similar among and . All tRNAs except for trnS(agy) could be folded into classic clover-leaf structures. Three domains and several conserved boxes were detected. Phylogenetic analysis of 90 mitogenomes of Passeriformes using maximum likelihood (ML) and Bayesian inference (BI) revealed that was a monophyletic group. Among species, and showed closer relationships, and was located in a basal position within . These data provide important information for better understanding the mitogenomic characteristics and phylogeny of .

摘要

该属属于鹡鸰科(雀形目),在此类群中,线粒体特征了解甚少,系统发育存在争议。完整的线粒体基因组(线粒体基因组)数据和大量分类群采样被认为是获取此类信息的理想策略。我们生成了[物种名称1]、[物种名称2]、[物种名称3]和[物种名称4]的四个完整线粒体基因组,并结合来自GenBank的线粒体基因组数据对[该属]物种进行了比较分析,然后基于37个线粒体基因重建了系统发育树。四个线粒体基因组序列的线粒体基因组表现出与大多数雀形目物种相同的基因顺序。对所有六个采样的[该属]线粒体基因组进行了比较分析。完整的线粒体基因组呈现出A偏斜和C偏斜。大多数蛋白质编码基因(PCGs)以ATG密码子起始,以TAA密码子终止。[该属物种]之间RNA的二级结构相似。除trnS(agy)外的所有tRNA都可以折叠成经典的三叶草叶结构。检测到三个结构域和几个保守框。使用最大似然法(ML)和贝叶斯推断(BI)对90个雀形目线粒体基因组进行的系统发育分析表明,[该属]是一个单系类群。在[该属]物种中,[物种名称5]和[物种名称6]显示出更密切的关系,并且[物种名称7]位于[该属]内的基部位置。这些数据为更好地了解[该属]的线粒体基因组特征和系统发育提供了重要信息。

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