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首页> 外文期刊>Genome Biology and Evolution >Analysis of the Opsin Repertoire in the Tardigrade Hypsibius dujardini Provides Insights into the Evolution of Opsin Genes in Panarthropoda
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Analysis of the Opsin Repertoire in the Tardigrade Hypsibius dujardini Provides Insights into the Evolution of Opsin Genes in Panarthropoda

机译:Tardigrade Hypsibius dujardini中视蛋白库的分析提供了对Panarthropoda中视蛋白基因进化的见解。

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Screening of a deeply sequenced transcriptome using Illumina sequencing as well as the genome of the tardigrade Hypsibius dujardini revealed a set of five opsin genes. To clarify the phylogenetic position of these genes and to elucidate the evolutionary history of opsins in Panarthropoda (Onychophora + Tardigrada + Arthropoda), we reconstructed the phylogeny of broadly sampled metazoan opsin genes using maximum likelihood and Bayesian inference methods in conjunction with carefully selected substitution models. According to our findings, the opsin repertoire of H. dujardini comprises representatives of all three major bilaterian opsin clades, including one r-opsin, three c-opsins, and a Group 4 opsin (neuropsin/opsin-5). The identification of the tardigrade ortholog of neuropsin/opsin-5 is the first record of this opsin type in a protostome, but our screening of available metazoan genomes revealed that it is also present in other protostomes. Our opsin phylogeny further suggests that two r-opsins, including an “arthropsin,” were present in the last common ancestor of Panarthropoda. Although both r-opsin lineages were retained in Onychophora and Arthropoda, the arthropsin was lost in Tardigrada. The single (most likely visual) r-opsin found in H. dujardini supports the hypothesis of monochromatic vision in the panarthropod ancestor, whereas two duplications of the ancestral panarthropod c-opsin have led to three c-opsins in tardigrades. Although the early-branching nodes are unstable within the metazoans, our findings suggest that the last common ancestor of Bilateria possessed six opsins: Two r-opsins, one c-opsin, and three Group 4 opsins, one of which (Go opsin) was lost in the ecdysozoan lineage.
机译:使用Illumina测序和缓坡杜鹃(Hypsibius dujardini)的基因组筛选深度测序的转录组,发现了一组5个视蛋白基因。为了阐明这些基因的系统发育位置,并阐明视蛋白在泛节肢动物(Onychophora + Tardigrada +节肢动物)中的进化史,我们使用最大可能性和贝叶斯推断方法结合精心选择的替代模型,重建了广泛采样的后生视蛋白基因的系统发育史。 。根据我们的发现,杜哈尔迪尼氏菌的视蛋白库包括所有三个主要的双边视蛋白进化枝的代表,包括一个r-视蛋白,三个c-视蛋白和一个4组视蛋白(neuropsin / opsin-5)。 Neuropsin / opsin-5的缓交直系同源物的鉴定是该原生蛋白在该视蛋白类型中的第一个记录,但是我们对可用的后生动物基因组的筛选显示,它也存在于其他原生动物中。我们的视蛋白系统发育进一步表明,在Panarthropoda的最后一个共同祖先中存在两个r-视蛋白,包括一个“促生长素”。尽管两个r-视蛋白谱系都保留在甲虫和节肢动物中,但节肢动物在塔迪格拉达丢失了。在杜哈尔迪尼氏菌中发现的单个(最可能是视觉)r-视蛋白支持了该节肢动物祖先的单色视觉的假说,而祖先的Panropropodod c-opsin的两次复制导致了tardigrade中的三个c-视蛋白。尽管后生动物的早期分支节点不稳定,但我们的发现表明,Bilateria的最后共同祖先拥有六个视蛋白:两个r-视蛋白,一个c-视蛋白和三个4组视蛋白,其中一个(Go opsin)是在蜕皮世系中迷失了。

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