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A simple method for gene phasing using mate pair sequencing

机译:使用配对配对测序进行基因定相的简单方法

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Background Recessive genes cause disease when both copies are affected by mutant loci. Resolving the cis/trans relationship of variations has been an important problem both for researchers, and increasingly, clinicians. Of particular concern are patients who have two heterozygous disease-causing mutations and could be diagnosed as affected (one mutation on each allele) or as phenotypically normal (both mutations on the same allele). Several methods are currently used to phase genes, however due to cost, complexity and/or low sensitivity they are not suitable for clinical purposes. Methods Long-range amplification was used to select and enrich the target gene ( CYP21A2 ) followed by modified mate-pair sequencing. Fragments that mapped coincidently to two heterozygous sites were identified and used for statistical analysis. Results Probabilities for cis/trans relationships between heterozygous positions were calculated along with 99% confidence intervals over the entire length of our 10 kb amplicons. The quality of phasing was closely related to the depth of coverage and the number of erroneous reads. Most of the error was found to have been introduced by recombination in the PCR reaction. Conclusions We have developed a simple method utilizing massively parallel sequencing that is capable of resolving two alleles containing multiple heterozygous positions. This method stands out among other phasing tools because it provides quantitative results allowing confident haplotype calls.
机译:背景技术当两个拷贝都受到突变基因座的影响时,隐性基因会引起疾病。无论是研究者还是临床医生,解决变异的顺/反关系都是一个重要的问题。特别令人关注的是具有两个导致杂合子疾病的突变并且可以被诊断为受累(每个等位基因上一个突变)或表型正常(两个等位基因上都突变)的患者。当前使用几种方法来定相基因,但是由于成本,复杂性和/或敏感性低,它们不适合临床目的。方法采用远距离扩增法筛选和富集靶基因(CYP21A2),然后进行修饰的配对对测序。巧合地映射到两个杂合位点的片段被鉴定并用于统计分析。结果在我们的10 kb扩增子全长上,计算了杂合位置之间顺式/反式关系的概率以及99%的置信区间。分阶段的质量与覆盖深度和错误读取次数密切相关。发现大多数错误是通过PCR反应中的重组引入的。结论我们已经开发了一种利用大规模平行测序的简单方法,该方法能够解析包含多个杂合位置的两个等位基因。该方法在其他定相工具中脱颖而出,因为它提供了定量结果,可以进行可靠的单倍型调用。

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