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A robust and powerful two-step testing procedure for local ancestry adjusted allelic association analysis in admixed populations

机译:针对混合族群中本地祖先调整的等位基因关联分析的强大而强大的两步测试程序

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摘要

Genetic association studies in admixed populations allows us to gain deeper understanding of the genetic architecture of human diseases and traits. However, population stratification, complicated linkage disequilibrium (LD) patterns, and the complex interplay of allelic and ancestry effects on phenotypic traits pose challenges in such analyses. These issues may lead to detecting spurious associations and/or result in reduced statistical power. Fortunately, if handled appropriately, these same challenges provide unique opportunities for gene mapping. To address these challenges and to take these opportunities, we propose a robust and powerful two-step testing procedure LAAA (Local Ancestry and Allelic Association). In the first step, LAAA robustly captures associations due to allelic effect, ancestry effect, and interaction effect, allowing detection of effect heterogeneity across ancestral populations. In the second step, LAAA identifies the source of association, namely allelic, ancestry or the combination. By jointly modeling allele, local ancestry, and ancestry-specific allelic effects, LAAA is highly powerful in capturing the presence of interaction between ancestry and allele effect. We evaluated the validity and statistical power of LAAA through simulations over a broad spectrum of scenarios. We further illustrated its usefulness by application to the CARe African American participants for association with hemoglobin levels. We were able to replicate independent groups’ previously identified loci that would have been missed in CARe without joint testing. Moreover, the loci, for which LAAA detected potential effect heterogeneity, was replicated among African Americans from the Women’s Health Initiative study. LAAA is freely available at .
机译:混合族群中的遗传关联研究使我们对人类疾病和性状的遗传结构有了更深入的了解。然而,在此类分析中,人群分层,复杂的连锁不平衡(LD)模式以及等位基因和祖先效应对表型性状的复杂相互作用构成了挑战。这些问题可能导致检测虚假关联和/或导致统计能力降低。幸运的是,如果处理得当,这些相同的挑战将为基因定位提供独特的机会。为了应对这些挑战并抓住机遇,我们提出了一个强大而强大的两步测试程序LAAA(本地祖先和等位基因协会)。第一步,由于等位基因效应,祖先效应和相互作用效应,LAAA牢固地捕获了关联,从而可以检测祖先群体之间的效应异质性。在第二步中,LAAA识别关联的来源,即等位基因,祖先或组合。通过联合建模等位基因,局部祖先和祖先特定的等位基因效应,LAAA在捕获祖先和等位基因效应之间相互作用的存在方面非常强大。我们通过在各种情况下的仿真评估了LAAA的有效性和统计能力。我们通过向CARe非裔美国人参与者申请与血红蛋白水平相关联的方法进一步说明了它的有用性。我们能够复制独立小组以前确定的基因座,而这些基因座在未经联合测试的情况下会在CARe中丢失。此外,根据“妇女健康倡议”研究,在非裔美国人中复制了LAAA检测到潜在影响异质性的基因座。 LAAA可在处免费获得。

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