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河豚蛋白质编码基因上的选择压力与表型特征相关。

Selective pressure on the protein-coding genes of the pufferfish is correlated with phenotypic traits.

作者信息

Ahn Hyeonju, Lee Chul, Nam Bo-Hye, Kim Eun Bae, Caetano-Anolles Kelsey, Kim Heebal

机构信息

Department of Agricultural Biotechnology, Seoul National University, Seoul 151-742, Republic of Korea.

Interdisciplinary Program in Bioinformatics, Seoul National University, Seoul 151-742, Republic of Korea.

出版信息

Mar Genomics. 2018 Feb;37:182-186. doi: 10.1016/j.margen.2017.11.015. Epub 2017 Dec 19.

Abstract

The pufferfish accumulates neurotoxic tetrodotoxin in its body and inflates by filling its stomach with water. These traits are unique to this species, and may be a result of adaptation post-divergence of Tetraodontidae. However, evolution of the protein-coding genes in the pufferfish has not yet been well elucidated. Detection of positive selection on these genes can help us understand the mechanisms associated with functional evolution. We downloaded well-annotated gene information of two pufferfish species, Takifugu rubripes and Tetraodon nigroviridis, from the public ENSEMBL database. In order to detect selective pressure on protein-coding sequences, we performed dN/dS estimation using codeml within the PAML software package. We selected one to one orthologous genes among seven fish species (Gasterosteus aculeatus, Oryzias latipes, Poecilia formosa, Takifugu rubripes, Tetraodon nigroviridis, and Xiphophorus maculatus). Results of dN/dS analysis on orthologous genes indicate that pufferfish showed high non-synonymous substitution rate for positively selected genes, and the evolutionary rate was faster during the diversification of two pufferfishes after divergence. Additionally, a candidate mechanism for regulation of neuro-toxicity of tetrodotoxin was identified from functional annotation of positively selected genes. These results support positive selection on protein-coding genes of the pufferfish with the acquisition of specific phenotypic traits.

摘要

河豚在体内积累神经毒性河豚毒素,并通过将水吸入胃中使身体膨胀。这些特征是该物种所特有的,可能是四齿鲀科分化后适应的结果。然而,河豚中蛋白质编码基因的进化尚未得到很好的阐明。检测这些基因上的正选择可以帮助我们了解与功能进化相关的机制。我们从公共ENSEMBL数据库下载了两种河豚物种——红鳍东方鲀和黑青斑河鲀——注释良好的基因信息。为了检测蛋白质编码序列上的选择压力,我们使用PAML软件包中的codeml进行了非同义替换率与同义替换率的估计。我们在七种鱼类(三刺鱼、青鳉、食蚊鱼、红鳍东方鲀、黑青斑河鲀和剑尾鱼)中选择了一对一的直系同源基因。对直系同源基因的非同义替换率与同义替换率分析结果表明,河豚在正选择基因上表现出较高的非同义替换率,并且在两种河豚分化后的多样化过程中进化速率更快。此外,从正选择基因的功能注释中鉴定出了一种调节河豚毒素神经毒性的候选机制。这些结果支持了河豚蛋白质编码基因上的正选择以及特定表型特征的获得。

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