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EGM: encapsulated gene-by-gene matching to identify gene orthologs and homologous segments in genomes.

机译:EGM:封装的逐个基因匹配,以识别基因组中的基因直系同源物和同源片段。

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MOTIVATION: Identification of functionally equivalent genes in different species is essential to understand the evolution of biological pathways and processes. At the same time, identification of strings of conserved orthologous genes helps identify complex genomic rearrangements across different organisms. Such an insight is particularly useful, for example, in the transfer of experimental results between different experimental systems such as Drosophila and mammals. RESULTS: Here, we describe the Encapsulated Gene-by-gene Matching (EGM) approach, a method that employs a graph matching strategy to identify gene orthologs and conserved gene segments. Given a pair of genomes, EGM constructs a global gene match for all genes taking into account gene context and family information. The Hungarian method for identifying the maximum weight matching in bipartite graphs is employed, where the resulting matching reveals one-to-one correspondences between nodes (genes) in a manner that maximizes the gene similarity and context. Conclusion: We tested our approach by performing several comparisons including a detailed Human versus Mouse genome mapping. We find that the algorithm is robust and sensitive in detecting orthologs and conserved gene segments. EGM can sensitively detect rearrangements within large and small chromosomal segments. The EGM tool is fully automated and easy to use compared to other more complex methods that also require extensive manual intervention and input. AVAILABILITY: The EGM software, Supplementary information and other tools are available online from http://vbc.med.monash.edu.au/ approximately kmahmood/EGM.
机译:动机:鉴定不同物种中功能等效的基因对于理解生物学途径和过程的进化至关重要。同时,鉴定一串保守的直系同源基因有助于鉴定跨不同生物的复杂基因组重排。这种洞察力在例如不同果蝇和哺乳动物等不同实验系统之间转移实验结果时特别有用。结果:在这里,我们描述了封装的基因逐基因匹配(EGM)方法,该方法采用图匹配策略来识别基因直系同源基因和保守基因片段。给定一对基因组,EGM会考虑基因背景和家族信息,为所有基因构建一个全局基因匹配。使用匈牙利方法来识别二部图中的最大权重匹配,其中所得的匹配以最大化基因相似性和上下文的方式揭示节点(基因)之间的一对一对应关系。结论:我们通过进行一些比较测试了我们的方法,其中包括详细的人与小鼠基因组作图。我们发现该算法在检测直向同源物和保守的基因片段方面既鲁棒又灵敏。 EGM可以灵敏地检测大小染色体片段内的重排。与其他更复杂的方法(也需要大量的手动干预和输入)相比,EGM工具是完全自动化且易于使用的。可用性:EGM软件,补充信息和其他工具可从http://vbc.med.monash.edu.au/大约kmahmood / EGM在线获得。

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