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Polygenic Scores for Height in Admixed Populations

机译:混合群体高度的多基因分数

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摘要

Polygenic risk scores (PRS) use the results of genome-wide association studies (GWAS) to predict quantitative phenotypes or disease risk at an individual level, and provide a potential route to the use of genetic data in personalized medical care. However, a major barrier to the use of PRS is that the majority of GWAS come from cohorts of European ancestry. The predictive power of PRS constructed from these studies is substantially lower in non-European ancestry cohorts, although the reasons for this are unclear. To address this question, we investigate the performance of PRS for height in cohorts with admixed African and European ancestry, allowing us to evaluate ancestry-related differences in PRS predictive accuracy while controlling for environment and cohort differences. We first show that the predictive accuracy of height PRS increases linearly with European ancestry and is partially explained by European ancestry segments of the admixed genomes. We show that recombination rate, differences in allele frequencies, and differences in marginal effect sizes across ancestries all contribute to the decrease in predictive power, but none of these effects explain the decrease on its own. Finally, we demonstrate that prediction for admixed individuals can be improved by using a linear combination of PRS that includes ancestry-specific effect sizes, although this approach is at present limited by the small size of non-European ancestry discovery cohorts.
机译:多基因风险评分(PRS)使用基因组关联研究(GWA)的结果来预测个人水平的定量表型或疾病风险,并提供用于在个性化医疗中使用遗传数据的潜在路线。然而,使用PRS的主要障碍是大多数GWA都来自欧洲血统的队列。非欧洲血统队列中,这些研究构建的PRS的预测力在非欧洲血统队伍中显着较低,尽管这对此的原因尚不清楚。为了解决这个问题,我们调查了与混合非洲和欧洲血统的群组中的高度对高度的表现,使我们能够评估PRS预测准确性的祖先相关的差异,同时控制环境和裁员差异。我们首先表明,高度PRS的预测精度随欧洲血统线性增加,并且由欧洲祖先分段部分解释的混合基因组。我们展示了重组率,等位基因频率的差异,以及对祖先的边际效果大小的差异都有助于降低预测力,但这些影响都没有解释自己的减少。最后,我们证明可以通过使用包括祖先特异性效应尺寸的PRS的线性组合来改善对混合的个体的预测,尽管此方法目前受到小尺寸的非欧洲祖先发现队列的限制。

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