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Identifying variants that contribute to linkage for dichotomous and quantitative traits in extended pedigrees

机译:识别有助于扩展谱系中二分和定量性状连锁的变体

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Compared to genome-wide association analysis, linkage analysis is less influenced by allelic heterogeneity. The use of linkage information in large families should provide a great opportunity to identify less frequent variants. We perform a linkage scan for both dichotomous and quantitative traits in eight extended families. For the dichotomous trait, we identified one linkage region on chromosome 4q. For quantitative traits, we identified two regions on chromosomes 4q and 6p for Q1 and one region on chromosome 6q for Q2. To identify variants that contribute to these linkage signals, we performed standard association analysis in genomic regions of interest. We also screened less frequent variants in the linkage region based on the risk ratio and phenotypic distribution among carriers. Two rare variants at VEGFC and one common variant on chromosome 4q conferred the greatest risk for the dichotomous trait. We identified two rare variants on chromosomes 4q ( VEGFC ) and 6p ( VEGFA ) that explain 12.4% of the total phenotypic variance of trait Q1. We also identified four variants (including one at VNN3 ) on chromosome 6q that are able to drop the linkage LOD from 3.7 to 1.0. These results suggest that the use of classical linkage and association methods in large families can provide a useful approach to identifying variants that are responsible for diseases and complex traits in families.
机译:与全基因组关联分析相比,连锁分析受等位基因异质性的影响较小。在大家庭中使用连锁信息应该为识别频率较低的变异提供很大的机会。我们对八个大家庭的二分和定量性状进行连锁扫描。对于二分性状,我们在染色体4q上确定了一个连锁区域。对于数量性状,我们确定了Q1的4q和6p染色体上的两个区域,以及Q2的6q染色体上了一个区域。为了鉴定有助于这些连锁信号的变体,我们在感兴趣的基因组区域进行了标准关联分析。我们还根据风险比和携带者之间的表型分布,在连锁区域中筛选了频率较低的变体。 VEGFC处的两个罕见变体和4q染色体上的一个常见变体赋予了二分性状最大的风险。我们在染色体4q(VEGFC)和6p(VEGFA)上鉴定了两个罕见变体,它们解释了特征Q1的总表型变异的12.4%。我们还鉴定了6q号染色体上的四个变异体(包括VNN3处的一个变异体),能够将连锁LOD从3.7降低到1.0。这些结果表明,在大型家庭中使用经典的链接和关联方法可以提供一种有用的方法,来识别导致家庭疾病和复杂性状的变异。

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