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首页> 外文期刊>Genome Biology >PEMer: a computational framework with simulation-based error models for inferring genomic structural variants from massive paired-end sequencing data
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PEMer: a computational framework with simulation-based error models for inferring genomic structural variants from massive paired-end sequencing data

机译:PEMer:具有基于仿真的错误模型的计算框架,用于从大量配对末端测序数据中推断基因组结构变异

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ABSTRACT: Personal-genomics endeavors, such as the 1000 Genomes project, are generating maps of genomic structural variants by analyzing ends of massively sequenced genome fragments. To process these we developed Paired-End Mapper (PEMer; http://sv.gersteinlab.org/pemer). This comprises an analysis pipeline, compatible with several next-generation sequencing platforms; simulation-based error models, yielding confidence-values for each structural variant; and a back-end database. The simulations demonstrated high structural variant reconstruction efficiency for PEMer's coverage-adjusted multi-cutoff scoring-strategy and showed its relative insensitivity to base-calling errors.
机译:摘要:个人基因组学的努力,例如1000 Genomes项目,正在通过分析大量测序的基因组片段的末端来生成基因组结构变异图。为了处理这些,我们开发了配对末端映射器(PEMer; http://sv.gersteinlab.org/pemer)。它包括一个与几个下一代测序平台兼容的分析管道;基于仿真的误差模型,得出每个结构变量的置信度值;和一个后端数据库。仿真结果表明,PEMer的覆盖范围调整后的多截止评分策略具有较高的结构变异重建效率,并显示了其对碱基检出错误的相对敏感性。

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