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Identifying positional homologs as bidirectional best hits of sequence and gene context similarity

机译:将位置同源物鉴定为序列和基因上下文相似性的双向最佳匹配

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Identifying corresponding genes (orthologs) in different species is an important step in genome-wide comparative analysis. In particular, one-to-one correspondences between genes in different species greatly simplify certain problems such as transfer of function annotation and genome rearrangement studies. Positional homologs are the direct descendants of a single ancestral gene in the most recent common ancestor and by definition form one-to-one correspondence. In this work, we present a simple yet effective method (BBH-LS) for the identification of positional homologs from the comparative analysis of two genomes. Our BBH-LS method integrates sequence similarity and gene context similarity in order to get more accurate ortholog assignments. Specifically, BBH-LS applies the bidirectional best hit heuristic to a combination of sequence similarity and gene context similarity scores. We applied our method to the human, mouse, and rat genomes and found that BBH-LS produced the best results when using both sequence and gene context information equally. Compared to the state-of-the-art algorithms, such as MSOAR2, BBH-LS is able to identify more positional homologs with fewer false positives.
机译:识别不同物种中的相应基因(直系同源基因)是全基因组比较分析中的重要一步。特别是,不同物种中基因之间的一对一对应关系极大地简化了某些问题,例如功能注释的转移和基因组重排研究。位置同源物是单个祖先基因在最近的共同祖先中的直接后代,并且根据定义形成一对一的对应关系。在这项工作中,我们提出了一个简单而有效的方法(BBH-LS),用于从两个基因组的比较分析中识别位置同源物。我们的BBH-LS方法整合了序列相似性和基因上下文相似性,以获得更准确的直系同源物分配。具体地说,BBH-LS将双向最佳匹配启发式方法应用于序列相似性和基因上下文相似性评分的组合。我们将我们的方法应用于人,小鼠和大鼠的基因组,发现当同时使用序列和基因背景信息时,BBH-LS产生了最佳结果。与最新的算法(例如MSOAR2)相比,BBH-LS能够识别更多的位置同源物,而假阳性更少。

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