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Complete Mitochondrial DNA Sequences of the Threadfin Cichlid (Petrochromis trewavasae) and the Blunthead Cichlid (Tropheus moorii) and Patterns of Mitochondrial Genome Evolution in Cichlid Fishes

机译:fin鳍丽鱼科鱼(Petrochromis trewavasae)和钝头丽鱼科鱼(Tropheus moorii)的完整线粒体DNA序列以及丽鱼科鱼的线粒体基因组进化模式

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摘要

The cichlid fishes of the East African Great Lakes represent a model especially suited to study adaptive radiation and speciation. With several African cichlid genome projects being in progress, a promising set of closely related genomes is emerging, which is expected to serve as a valuable data base to solve questions on genotype-phenotype relations. The mitochondrial (mt) genomes presented here are the first results of the assembly and annotation process for two closely related but eco-morphologically highly distinct Lake Tanganyika cichlids, Petrochromis trewavasae and Tropheus moorii. The genomic sequences comprise 16,588 bp (P. trewavasae) and 16,590 bp (T. moorii), and exhibit the typical mitochondrial structure, with 13 protein-coding genes, 2 rRNA genes, 22 tRNA genes, and a non-coding control region. Analyses confirmed that the two species are very closely related with an overall sequence similarity of 96%. We analyzed the newly generated sequences in the phylogenetic context of 21 published labroid fish mitochondrial genomes. Consistent with other vertebrates, the D-loop region was found to evolve faster than protein-coding genes, which in turn are followed by the rRNAs; the tRNAs vary greatly in the rate of sequence evolution, but on average evolve the slowest. Within the group of coding genes, ND6 evolves most rapidly. Codon usage is similar among examined cichlid tribes and labroid families; although a slight shift in usage patterns down the gene tree could be observed. Despite having a clearly different nucleotide composition, ND6 showed a similar codon usage. C-terminal ends of Cox1 exhibit variations, where the varying number of amino acids is related to the structure of the obtained phylogenetic tree. This variation may be of functional relevance for Cox1 synthesis.
机译:东非五大湖的丽鱼科鱼类是一种特别适合研究适应性辐射和物种形成的模型。随着数个非洲丽鱼科鱼基因组计划的进行,正在出现一组有希望的紧密相关的基因组,有望作为解决基因型与表型关系问题的有价值的数据库。此处介绍的线粒体(mt)基因组是两个紧密相关但在生态形态上高度不同的坦any尼喀慈鲷丽鱼,印度鹤眼和Tropheus moorii的组装和注释过程的第一个结果。基因组序列包含16,588 bp(tre.vasae)和16,590 bp(moorii),并显示典型的线粒体结构,具有13个蛋白质编码基因,2个rRNA基因,22个tRNA基因和一个非编码控制区。分析证实,这两个物种与96%的总体序列相似性非常紧密。我们分析了21种已发表的唇形鱼类线粒体基因组的系统发育背景中的新生成的序列。与其他脊椎动物一致,发现D环区域的进化速度要快于蛋白质编码基因,后者依次是rRNA。 tRNA的序列进化速率差异很大,但平均而言进化最慢。在编码基因组中,ND6进化最快。在检查的丽鱼科动物部落和唇形科中,密码子的使用情况相似。尽管可以观察到使用模式在基因树上的轻微变化。尽管核苷酸组成明显不同,但ND6的密码子用法相似。 Cox1的C末端表现出变化,其中氨基酸的变化数量与获得的系统发育树的结构有关。这种变化可能与Cox1合成具有功能相关性。

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