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Association screening for genes with multiple potentially rare variants: an inverse-probability weighted clustering approach

机译:筛选具有多种潜在稀有变体的基因:反向概率加权聚类方法

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Both common variants and rare variants are involved in the etiology of most complex diseases in humans. Developments in sequencing technology have led to the identification of a high density of rare variant single-nucleotide polymorphisms ( SNPs ) on the genome, each of which affects only at most 1% of the population. Genotypes derived from these SNPs allow one to study the involvement of rare variants in common human disorders. Here, we propose an association screening approach that treats genes as units of analysis. SNPs within a gene are used to create partitions of individuals, and inverse-probability weighting is used to overweight genotypic differences observed on rare variants. Association between a phenotype trait and the constructed partition is then evaluated. We consider three association tests (one-way ANOVA , chi-square test, and the partition retention method) and compare these strategies using the simulated data from the Genetic Analysis Workshop 17. Several genes that contain causal SNPs were identified by the proposed method as top genes.
机译:常见变体和罕见变体均参与人类最复杂的疾病的病因。测序技术的开发导致在基因组上鉴定稀有变体单核苷酸多态性(SNP)的高密度,每种少数只影响最多1%的人群。来自这些SNP的基因型允许人们研究罕见的罕见变种在普通人疾病中的累围。在这里,我们提出一种关联筛查方法,将基因视为分析单位。基因内的SNP用于产生个体的分区,并且逆概率加权用于超重在罕见变体上观察到的基因型差异。然后评估表型特征和构建分区之间的关联。我们考虑三个关联测试(单向ANOVA,Chi-Square测试和分区保留方法),并使用来自遗传分析研讨会17的模拟数据进行比较这些策略。通过所提出的方法确定含有因果SNP的几种基因。顶部基因。

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