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Quest for Orthologs Entails Quest for Tree of Life: In Search of the Gene Stream

机译:寻找直系同源物需要寻找生命之树:寻找基因流

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摘要

Quest for Orthologs (QfO) is a community effort with the goal to improve and benchmark orthology predictions. As quality assessment assumes prior knowledge on species phylogenies, we investigated the congruency between existing species trees by comparing the relationships of 147 QfO reference organisms from six Tree of Life (ToL)/species tree projects: The National Center for Biotechnology Information (NCBI) taxonomy, Opentree of Life, the sequenced species/species ToL, the 16S ribosomal RNA (rRNA) database, and trees published by Ciccarelli et al. (Ciccarelli FD, et al. 2006. Toward automatic reconstruction of a highly resolved tree of life. Science 311:1283–1287) and by Huerta-Cepas et al. (Huerta-Cepas J, Marcet-Houben M, Gabaldon T. 2014. A nested phylogenetic reconstruction approach provides scalable resolution in the eukaryotic Tree Of Life. PeerJ PrePrints 2:223) Our study reveals that each species tree suggests a different phylogeny: 87 of the 146 (60%) possible splits of a dichotomous and rooted tree are congruent, while all other splits are incongruent in at least one of the species trees. Topological differences are observed not only at deep speciation events, but also within younger clades, such as Hominidae, Rodentia, Laurasiatheria, or rosids. The evolutionary relationships of 27 archaea and bacteria are highly inconsistent. By assessing 458,108 gene trees from 65 genomes, we show that consistent species topologies are more often supported by gene phylogenies than contradicting ones. The largest concordant species tree includes 77 of the QfO reference organisms at the most. Results are summarized in the form of a consensus ToL () that can serve different benchmarking purposes.
机译:直向同源物探索(QfO)是社区的一项工作,旨在改善和规范正统预测。由于质量评估假设已掌握物种发展史的知识,因此,我们通过比较六个生命树(ToL)/物种树项目中的147种QfO参考生物之间的关系,研究了现有物种树之间的一致性:国家生物技术信息中心(NCBI)分类,生命之树,测序的物种/物种ToL,16S核糖体RNA(rRNA)数据库以及Ciccarelli等人发表的树木。 (Ciccarelli FD等人,2006年。《自动重建高度分解的生命树。科学311:1283-1287)》和Huerta-Cepas等人。 (Huerta-Cepas J,Marcet-Houben M,Gabaldon T.2014。嵌套的系统发育重建方法在真核生物树中提供了可扩展的分辨率。PeerJ PrePrints 2:223)我们的研究表明,每种物种树都暗示着不同的系统发育:87二叉树和有根树的146种可能的分裂中有60%(60%)是一致的,而至少一种树种中所有其他分裂都不是一致的。不仅在深层物种形成事件中,而且在较年轻的进化枝中也观察到了拓扑差异,例如人科,啮齿类,Laurasiatheria或rosids。 27种古细菌与细菌的进化关系高度不一致。通过评估来自65个基因组的458,108个基因树,我们显示出一致的物种拓扑更多地由基因系统发育支持,而不是相互矛盾的。最大的一致物种树最多包含77种QfO参考生物。结果以共识ToL()的形式总结,可以用于不同的基准测试目的。

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