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The effect of haplotype-block definitions on inference of haplotype-block structure and htSNPs selection

机译:单体型定义对推断单体型结构和htSNPs选择的影响

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It has been recently suggested that the human genome is organized as a series of haplotype blocks, and efforts to create a genome-wide haplotype map are already underway. Several computational algorithms have been proposed to partition the genome. However, little is known about their behaviors in relation to the haplotype-block partitioning and haplotype-tagging SNPs selection. Here, we present a systematic comparison of three classes of haplotype-block partition definitions, a diversity-based method, a linkage-disequilibrium (LD)-based method, and a recombination-based method. The data used were derived from a coalescent simulation under both a uniform recombination model and one that assumes recombination hotspots. There were considerable differences in haplotype information loss in the measure of entropy when the partition methods were compared under different population-genetics scenarios. Under both recombination models, the results from the LD-based definition and the recombination-based definition were more similar to each other than were the results from the diversity-based definition. This work demonstrates that when undertaking haplotype-based association mapping, the choice of haplotype-block definition and SNP selection requires careful consideration.
机译:最近,有人提出将人类基因组组织成一系列的单倍型模块,并且已经在努力建立全基因组的单倍型图谱。已经提出了几种计算算法来划分基因组。然而,关于它们与单倍型区块分配和单倍型标签SNP选择有关的行为知之甚少。在这里,我们提出了三类单元型分区定义的系统比较,一种基于多样性的方法,一种基于连锁不平衡(LD)的方法和一种基于重组的方法。所使用的数据均来自在均一重组模型和假定重组热点的模型下的合并模拟。当在不同的种群-遗传学情景下比较分区方法时,在熵的度量中单倍型信息丢失存在很大差异。在两种重组模型下,基于LD的定义和基于重组的定义的结果比基于多样性的定义的结果更加相似。这项工作表明,在进行基于单体型的关联映射时,单体型块定义的选择和SNP选择需要仔细考虑。

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