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A new perspective on phylogeny and evolution of tetraodontiform fishes (Pisces: Acanthopterygii) based on whole mitochondrial genome sequences: Basal ecological diversification?

机译:基于整个线粒体基因组序列的四齿鱼类(双鱼座:Acanthopterygii)的系统发育和进化的新观点:基础生态多样化?

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摘要

BackgroundThe order Tetraodontiformes consists of approximately 429 species of fishes in nine families. Members of the order exhibit striking morphological diversity and radiated into various habitats such as freshwater, brackish and coastal waters, open seas, and deep waters along continental shelves and slopes. Despite extensive studies based on both morphology and molecules, there has been no clear resolution except for monophyly of each family and sister-group relationships of Diodontidae + Tetraodontidae and Balistidae + Monacanthidae. To address phylogenetic questions of tetraodontiform fishes, we used whole mitochondrial genome (mitogenome) sequences from 27 selected species (data for 11 species were newly determined during this study) that fully represent all families and subfamilies of Tetraodontiformes (except for Hollardinae of the Triacanthodidae). Partitioned maximum likelihood (ML) and Bayesian analyses were performed on two data sets comprising concatenated nucleotide sequences from 13 protein-coding genes (all positions included; third codon positions converted into purine [R] and pyrimidine [Y]), 22 transfer RNA and two ribosomal RNA genes (total positions = 15,084).
机译:背景四齿象目由9个科的大约429种鱼类组成。该订单的成员表现出惊人的形态多样性,并辐射到各种栖息地,例如淡水,咸淡水和沿海水域,公海以及大陆架和斜坡沿岸的深水区。尽管对形态和分子进行了广泛的研究,但除每个科的单亲和双齿科+四齿科和畸齿科+莫科科的姊妹关系外,没有明确的解决方案。为了解决四齿鱼类的系统发育问题,我们使用了来自27个选定物种的完整线粒体基因组(有丝分裂基因组)序列(在本研究中新确定了11种数据),这些序列完全代表了四齿动物的所有科和亚科(除了Tricananthodidae的Hollardinae) 。在两个数据集上进行了分区最大似然(ML)和贝叶斯分析,该数据集包含来自13个蛋白质编码基因的串联核苷酸序列(包括所有位置;第三个密码子位置转换为嘌呤[R]和嘧啶[Y]),22个转移RNA和两个核糖体RNA基因(总位置= 15,084)。

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