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MetaPhOrs: orthology and paralogy predictions from multiple phylogenetic evidence using a consistency-based confidence score

机译:MetaPhOrs:使用基于一致性的置信度得分从多个系统发育证据中进行的正字和副词预测

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Reliable prediction of orthology is central to comparative genomics. Approaches based on phylogenetic analyses closely resemble the original definition of orthology and paralogy and are known to be highly accurate. However, the large computational cost associated to these analyses is a limiting factor that often prevents its use at genomic scales. Recently, several projects have addressed the reconstruction of large collections of high-quality phylogenetic trees from which orthology and paralogy relationships can be inferred. This provides us with the opportunity to infer the evolutionary relationships of genes from multiple, independent, phylogenetic trees. Using such strategy, we combine phylogenetic information derived from different databases, to predict orthology and paralogy relationships for 4.1 million proteins in 829 fully sequenced genomes. We show that the number of independent sources from which a prediction is made, as well as the level of consistency across predictions, can be used as reliable confidence scores. A webserver has been developed to easily access these data (http://orthology.phylomedb.org), which provides users with a global repository of phylogeny-based orthology and paralogy predictions.
机译:正交学的可靠预测对于比较基因组学至关重要。基于系统发育分析的方法与原始的正字学和寄生学定义非常相似,并且已知其准确性很高。但是,与这些分析相关的大量计算成本是一个限制因素,通常会阻止其在基因组规模上使用。最近,有几个项目致力于重建大量高品质的系统树,从中可以推断出正构和副学的关系。这为我们提供了从多个独立的系统树中推断基因进化关系的机会。使用这种策略,我们结合了来自不同数据库的系统发育信息,以预测829个完全测序的基因组中的410万蛋白质的正交学和寄生学关系。我们表明,可以从中进行预测的独立来源数量以及各个预测之间的一致性级别都可以用作可靠的置信度得分。已经开发了一个网络服务器来轻松访问这些数据(http://orthology.phylomedb.org),该服务器为用户提供了基于系统发育的正字法和寄生学预测的全球存储库。

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