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Conditioning adaptive combination of P-values method to analyze case-parent trios with or without population controls

机译:P值方法的条件自适应组合可分析有无人口控制的个案双亲三重奏

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摘要

Detection of rare causal variants can help uncover the etiology of complex diseases. Recruiting case-parent trios is a popular study design in family-based studies. If researchers can obtain data from population controls, utilizing them in trio analyses can improve the power of methods. The transmission disequilibrium test (TDT) is a well-known method to analyze case-parent trio data. It has been extended to rare-variant association testing (abbreviated as “rvTDT”), with the flexibility to incorporate population controls. The rvTDT method is robust to population stratification. However, power loss may occur in the conditioning process. Here we propose a “conditioning adaptive combination of P-values method” (abbreviated as “conADA”), to analyze trios with/without unrelated controls. By first truncating the variants with larger P-values, we decrease the vulnerability of conADA to the inclusion of neutral variants. Moreover, because the test statistic is developed by conditioning on parental genotypes, conADA generates valid statistical inference in the presence of population stratification. With regard to statistical methods for next-generation sequencing data analyses, validity may be hampered by population stratification, whereas power may be affected by the inclusion of neutral variants. We recommend conADA for its robustness to these two factors (population stratification and the inclusion of neutral variants).
机译:检测罕见的因果变异有助于发现复杂疾病的病因。在基于家庭的研究中,招募案例父母三人组是一种流行的研究设计。如果研究人员可以从人群控制中获得数据,则在三重分析中利用它们可以提高方法的功效。传输不平衡测试(TDT)是一种分析案例父级三重数据的众所周知的方法。它已扩展到稀有变异关联测试(缩写为“ rvTDT”),可以灵活地纳入种群控制。 rvTDT方法对人口分层具有鲁棒性。但是,在调节过程中可能会发生功率损耗。在这里,我们提出了“ P值的条件自适应组合方法”(简称为“ conADA”),以分析有/没有无关控件的三重奏。通过首先截断具有较大P值的变体,我们降低了conADA对包含中性变体的脆弱性。此外,由于测试统计数据是通过对父母的基因型进行调节而得出的,因此,在存在群体分层的情况下,conADA会生成有效的统计推断。关于用于下一代测序数据分析的统计方法,有效性可能会受到人群分层的影响,而能力可能会受到中性变体的影响。我们建议conADA对这两个因素(种群分层和包含中性变体)具有鲁棒性。

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