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Genetic Linkage Analysis of a Dichotomous Trait Incorporating a Tightly Linked Quantitative Trait in Affected Sib Pairs

机译:遗传连锁分析的二分性状纳入受影响的同胞对中的紧密联系的数量性状。

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摘要

Many complex diseases are usually considered as dichotomous traits but are also associated with quantitative biological markers or quantitative risk factors. For such dichotomous traits, although their associated quantitative traits may not directly underly the diagnosis of the disease status, if the associated quantitative trait is also linked to the chromosomal regions linked to the dichotomous trait, then joint analysis of dichotomous and quantitative traits should be more efficient than consideration of them separately. Previous studies have focused on the situation when a dichotomous trait can be modeled by a threshold process acting on a single underlying normal liability distribution. However, for many complex disorders, including most psychiatric disorders, diagnosis is generally based on a set of binary or discrete criteria. These traits cannot be modeled on the basis of a threshold process acting on an underlying continuous trait. We propose a likelihood-based method that efficiently combines such a discrete trait and an associated quantitative trait in the analysis, using affected-sib-pair data. Our simulation studies suggest that joint analysis increases the power to detect linkage of dichotomous traits. We also apply the proposed new method to an asthma genome-scan data set and incorporate the total serum immunoglobulin E level in the analysis.
机译:通常将许多复杂的疾病视为二分性特征,但也与定量的生物学标记或定量的危险因素相关。对于此类二分性状,尽管其相关的定量性状可能未直接在疾病状况的诊断中占主导地位,但如果相关的定量性状也与与二分性状相关的染色体区域相关,则对二分性和定量性状进行联合分析应更多比单独考虑它们更有效率。以前的研究集中在可以通过作用于单个基础正态责任分布的阈值过程来模拟二分性状的情况。但是,对于包括大多数精神疾病在内的许多复杂疾病,诊断通常基于一组二进制或离散标准。这些特征不能基于作用于基础连续特征的阈值过程进行建模。我们提出了一种基于可能性的方法,该方法使用受影响的同胞对数据有效地将这种离散性状和相关的定量性状组合在一起。我们的模拟研究表明,联合分析可提高检测二分性状联系的能力。我们还将提议的新方法应用于哮喘基因组扫描数据集,并将总血清免疫球蛋白E水平纳入分析。

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