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Accurate identification of orthologous segments among multiple genomes

机译:准确鉴定多个基因组中的直系同源片段

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Motivation: The accurate detection of orthologous segments (also referred to as syntenic segments) plays a key role in comparative genomics, as it is useful for inferring genome rearrangement scenarios and computing whole-genome alignments. Although a number of algorithms for detecting orthologous segments have been proposed, none of them contain a framework for optimizing their parameter values.Methods: In the present study, we propose an algorithm, named OSfinder (Orthologous Segment finder), which uses a novel scoring scheme based on stochastic models. OSfinder takes as input the positions of short homologous regions (also referred to as anchors) and explicitly discriminates orthologous anchors from non-orthologous anchors by using Markov chain models which represent respective geometric distributions of lengths of orthologous and non-orthologous anchors. Such stochastic modeling makes it possible to optimize parameter values by maximizing the likelihood of the input dataset, and to automate the setting of the optimal parameter values.Results: We validated the accuracies of orthology-mapping algorithms on the basis of their consistency with the orthology annotation of genes. Our evaluation tests using mammalian and bacterial genomes demonstrated that OSfinder shows higher accuracy than previous algorithms.
机译:动机:直系同源片段(也称为同义片段)的准确检测在比较基因组学中起关键作用,因为它可用于推断基因组重排情况和计算全基因组比对。尽管已经提出了许多用于检测直系片段的算法,但是它们都没有包含用于优化其参数值的框架。方法:在本研究中,我们提出了一种名为OSfinder(直系片段查找器)的算法,该算法使用了新颖的评分基于随机模型的方案。 OSfinder将短同源区域(也称为锚)的位置作为输入,并使用马尔可夫链模型(分别表示直系和非直系锚的长度的几何分布),将直系锚与非直系锚区别开来。这样的随机建模使得可以通过最大化输入数据集的似然性来优化参数值,并自动设置最佳参数值。结果:我们基于与拼字法的一致性验证了拼字映射算法的准确性基因注释。我们使用哺乳动物和细菌基因组进行的评估测试表明,OSfinder具有比以前的算法更高的准确性。

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