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首页> 外文期刊>Communications Biology >Phylogenomics investigation of sparids (Teleostei: Spariformes) using high-quality proteomes highlights the importance of taxon sampling
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Phylogenomics investigation of sparids (Teleostei: Spariformes) using high-quality proteomes highlights the importance of taxon sampling

机译:使用优质蛋白质的磷酸盐(TepharoStei:Spariformes)的系统核糖学调查凸显了分类群抽样的重要性

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摘要

Sparidae (Teleostei: Spariformes) are a family of fish constituted by approximately 150 species with high popularity and commercial value, such as porgies and seabreams. Although the phylogeny of this family has been investigated multiple times, its position among other teleost groups remains ambiguous. Most studies have used a single or few genes to decipher the phylogenetic relationships of sparids. Here, we conducted a thorough phylogenomic analysis using five recently available Sparidae gene-sets and 26 high-quality, genome-predicted teleost proteomes. Our analysis suggested that Tetraodontiformes (puffer fish, sunfish) are the closest relatives to sparids than all other groups used. By analytically comparing this result to our own previous contradicting finding, we show that this discordance is not due to different orthology assignment algorithms; on the contrary, we prove that it is caused by the increased taxon sampling of the present study, outlining the great importance of this aspect in phylogenomic analyses in general. Paschalis Natsidis et al. present a phylogenomic analysis of the sparid family to correct their previous phylogeny, placing them in a closer relationship with the pufferfish family. They show that increased taxon sampling is more important than orthology assignment algorithms in constructing accurate phylogenies.
机译:Sparidae(Teactostei:Spariformes)是一系列的鱼类,由大约150种具有高普及和商业价值,如碉堡和海中的商业价值。虽然该家庭的系统发育已经多次调查,但其在其他极端群体中的地位仍然存在含糊不清。大多数研究使用单个或少数基因来破译略微的系统发育关系。在这里,我们使用五种最近可用的Sparidae基因组和26个高质量的基因组预测的TextoST蛋白质进行了彻底的系统托运学分析。我们的分析表明,Tetraodntiformes(河豚鱼,Sunfish)是比所用的所有其他组的渗透性最近的亲属。通过对我们自己以前的矛盾发现进行了分析比较,我们表明这种不间断的是由于不同的正非分配算法;相反,我们证明它是由目前研究的增加的分类种类取样引起的,概述了这方面的主要重要性。 paschalis natsidis等。呈现渗透性家族的系统核发科学分析以纠正他们以前的系统发育,将它们与河豚家族的紧密关系置于较近的关系中。他们表明,增加的分类群采样比构建精确的系统发育方面的正交分配算法更重要。

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