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ORTHOSCOPE: An Automatic Web Tool for Phylogenetically Inferring Bilaterian Orthogroups with User-Selected Taxa

机译:ORTHOSCOPE:一种自动Web工具用于系统地推断用户选择的分类群的Bilaterian Orthogroups

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摘要

Identification of orthologous or paralogous relationships of coding genes is fundamental to all aspects of comparative genomics. For accurate identification of orthologs among deeply diversified bilaterian lineages, precise estimation of gene trees is indispensable, given the complicated histories of genes over millions of years. By estimating gene trees, orthologs can be identified as members of an orthogroup, a set of genes descended from a single gene in the last common ancestor of all the species being considered. In addition to comparisons with a given species tree, purposeful taxonomic sampling increases the accuracy of gene tree estimation and orthogroup identification. Although some major phylogenetic relationships of bilaterians are gradually being unraveled, the scattering of published genomic data among separate web databases is becoming a significant hindrance to identification of orthogroups with appropriate taxonomic sampling. By integrating more than 250 metazoan gene models predicted in genome projects, we developed a web tool called ORTHOSCOPE to identify orthogroups of specific protein-coding genes within major bilaterian lineages. ORTHOSCOPE allows users to employ several sequences of a specific molecule and broadly accepted nodes included in a user-specified species tree as queries and to evaluate the reliability of estimated orthogroups based on topologies and node support values of estimated gene trees. A test analysis using data from 36 bilaterians was accomplished within 140 s. ORTHOSCOPE results can be used to evaluate orthologs identified by other stand-alone programs using genome-scale data. ORTHOSCOPE is freely available at or (last accessed December 28, 2018).
机译:鉴定编码基因的直系同源或旁系同源是比较基因组学各个方面的基础。考虑到数百万年以来基因的复杂历史,对于准确地识别深度多样化的双谱系谱系中的直系同源物,精确估计基因树是必不可少的。通过估计基因树,直系同源物可以被鉴定为直系同源物的成员,直系同源基因是从所有被考虑物种的最后一个共同祖先中的单个基因衍生的一组基因。除了与给定物种树进行比较外,有目的的生物分类采样还可以提高基因树估计和直系群识别的准确性。尽管正在逐渐揭示双边生物群之间的一些主要系统发育关系,但已发布的基因组数据在单独的网络数据库之间的分散正成为使用适当的生物分类学样本识别直群的重大障碍。通过整合在基因组计划中预测的250个以上的后生动物基因模型,我们开发了一种称为ORTHOSCOPE的网络工具,可以识别主要的双侧谱系中特定蛋白质编码基因的正交群。 ORTHOSCOPE允许用户使用特定分子的多个序列以及用户指定的物种树中包含的广泛接受的节点作为查询,并基于拓扑和估计的基因树的节点支持值来评估估计的正交群的可靠性。在140秒内完成了使用来自36个双语者的数据进行的测试分析。 ORTHOSCOPE结果可用于评估其他独立程序使用基因组规模数据鉴定的直系同源物。 ORTHOSCOPE可在或免费获得(最后访问时间为2018年12月28日)。

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