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On the design of clone-based haplotyping

机译:基于克隆的单体型设计

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Background Haplotypes are important for assessing genealogy and disease susceptibility of individual genomes, but are difficult to obtain with routine sequencing approaches. Experimental haplotype reconstruction based on assembling fragments of individual chromosomes is promising, but with variable yields due to incompletely understood parameter choices. Results We parameterize the clone-based haplotyping problem in order to provide theoretical and empirical assessments of the impact of different parameters on haplotype assembly. We confirm the intuition that long clones help link together heterozygous variants and thus improve haplotype length. Furthermore, given the length of the clones, we address how to choose the other parameters, including number of pools, clone coverage and sequencing coverage, so as to maximize haplotype length. We model the problem theoretically and show empirically the benefits of using larger clones with moderate number of pools and sequencing coverage. In particular, using 140 kb BAC clones, we construct haplotypes for a personal genome and assemble haplotypes with N50 values greater than 2.6 Mb. These assembled haplotypes are longer and at least as accurate as haplotypes of existing clone-based strategies, whether invivo or in vitro. Conclusions Our results provide practical guidelines for the development and design of clone-based methods to achieve long range, high-resolution and accurate haplotypes.
机译:背景单倍型对于评估单个基因组的族谱和疾病易感性很重要,但很难通过常规测序方法获得。基于单个染色体组装片段的实验单倍型重建是有希望的,但由于参数选择不完全,其产量可变。结果我们对基于克隆的单体型问题进行参数化,以便提供不同参数对单体型装配的影响的理论和经验评估。我们证实直觉很长的克隆有助于将杂合的变体连接在一起,从而提高单倍型的长度。此外,给定克隆的长度,我们讨论如何选择其他参数,包括池数,克隆覆盖率和测序覆盖率,以使单倍型长度最大化。我们从理论上对问题进行建模,并从经验上展示了使用具有中等数目的库和测序覆盖率的较大克隆的好处。特别是,使用140 kb BAC克隆,我们构建了个人基因组的单倍型,并装配了N50值大于2.6 Mb的单倍型。这些组装的单倍型更长,并且至少与现有的基于克隆的策略的单倍型一样准确,无论是体内还是体外。结论我们的结果为基于克隆的方法的开发和设计提供了实用的指导,以实现长距离,高分辨率和准确的单倍型。

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