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Accurate, high-throughput typing of copy number variation using paralogue ratios from dispersed repeats

机译:使用来自分散重复序列的拟真比准确,高通量地输入拷贝数变异

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Recent work has demonstrated an unexpected prevalence of copy number variation in the human genome, and has highlighted the part this variation may play in predisposition to common phenotypes. Some important genes vary in number over a high range (e.g. DEFB4, which commonly varies between two and seven copies), and have posed formidable technical challenges for accurate copy number typing, so that there are no simple, cheap, high-throughput approaches suitable for large-scale screening. We have developed a simple comparative PCR method based on dispersed repeat sequences, using a single pair of precisely designed primers to amplify products simultaneously from both test and reference loci, which are subsequently distinguished and quantified via internal sequence differences. We have validated the method for the measurement of copy number at DEFB4 by comparison of results from >800 DNA samples with copy number measurements by MAPH/REDVR, MLPA and array-CGH. The new Paralogue Ratio Test (PRT) method can require as little as 10 ng genomic DNA, appears to be comparable in accuracy to the other methods, and for the first time provides a rapid, simple and inexpensive method for copy number analysis, suitable for application to typing thousands of samples in large case-control association studies.
机译:最近的工作证明了人类基因组中拷贝数变异的出乎意料的流行,并强调了这种变异可能在易感于常见表型的部分。一些重要基因的数量在较大范围内变化(例如DEFB4,通常在2到7个拷贝之间变化),并且对精确的拷贝数分型提出了巨大的技术挑战,因此没有合适的简单,便宜,高通量的方法用于大规模筛选。我们已经开发了一种基于分散重复序列的简单比较PCR方法,使用一对精确设计的引物同时扩增来自测试位点和参考位点的产物,随后通过内部序列差异对其进行区分和定量。我们已通过比较来自800多个DNA样品的结果与MAPH / REDVR,MLPA和array-CGH的拷贝数测量结果的比较,验证了DEFB4拷贝数测量方法的有效性。新的Paralogue比率测试(PRT)方法仅需10 ng基因组DNA,其准确性似乎可与其他方法媲美,并且首次为拷贝数分析提供了一种快速,简单且廉价的方法,适用于在大型病例对照关联研究中用于成千上万个样本的分类的应用。

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