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Detection and reconstruction of tandemly organized de novo copy number variations

机译:检测和重建从头到尾组织的序号副本

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Background: The characterization of structural variations (SV) such as insertions, deletions and copy number variations is a critical step in the process of understanding the full genetic architecture of organisms. Copy number variations (CNV) have attracted much recent attention due to their effects on gene expression and disease status. Results: In this paper, we present a method that utilizes next-generation sequencing technologies (NGS), in order to both detect and reconstruct CNVs. We focus on a special type of CNV, namely tandemly organized de novo CNVs, which have been shown to occur with high frequency in the mouse genome. Conclusions: We apply our method to CNV regions randomly inserted into the reference mouse genome and show that our method achieves good performance for both detection and reconstruction of tandemly organized de novo CNVs.
机译:背景:结构变异(SV)的特征(例如插入,缺失和拷贝数变异)是了解生物体完整遗传结构过程中的关键步骤。拷贝数变异(CNV)由于其对基因表达和疾病状态的影响而备受关注。结果:在本文中,我们提出了一种利用下一代测序技术(NGS)的方法,以检测和重建CNV。我们专注于一种特殊类型的CNV,即从头到尾组织起来的CNV,这已被证明在小鼠基因组中以高频率发生。结论:我们的方法应用于随机插入参考小鼠基因组中的CNV区域,并表明我们的方法对于串联组织的从头CNV的检测和重建均具有良好的性能。

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