首页> 外文期刊>International journal of computational biology and drug design >Simulation of genomic recombination and the influence of DNA sequence diversity on cluster formation and detectability of recombination: a scientific workflow method.
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Simulation of genomic recombination and the influence of DNA sequence diversity on cluster formation and detectability of recombination: a scientific workflow method.

机译:基因组重组的模拟以及DNA序列多样性对簇形成和重组可检测性的影响:科学的工作流程方法。

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摘要

The detection of recombination from DNA sequences is relevant to the understanding of evolutionary and molecular genetics. We developed a Recombination Simulation Scientific Workflow System (RSSWS) for simulating recombination and using GENECONV to test the effect of pairwise differences in a diverse population on the detectability of recombination. Decreases in recombination rate owing to pairwise differences resulted in population clusters analogous to sympatric speciation under specific conditions and decreases in detectability of recombination, a phenomenon that we call 'cryptic recombination'. This computational method demonstrated the value of scientific workflow methods for analysing a complex process and data driven problem.
机译:从DNA序列检测重组与理解进化和分子遗传学有关。我们开发了用于模拟重组的重组模拟科学工作流程系统(RSSWS),并使用GENECONV测试了不同群体中成对差异对重组可检测性的影响。由于成对差异而导致的重组率降低,导致在特定条件下类似于同族物种形成的种群集群,并且重组的可检测性下降,这种现象我们称为“隐式重组”。这种计算方法证明了科学工作流程方法对于分析复杂过程和数据驱动问题的价值。

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