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A scalable estimator of SNP heritability for biobank-scale data

机译:用于生物库规模数据的SNP遗传力的可扩展估算器

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摘要

MotivationHeritability, the proportion of variation in a trait that can be explained by genetic variation, is an important parameter in efforts to understand the genetic architecture of complex phenotypes as well as in the design and interpretation of genome-wide association studies. Attempts to understand the heritability of complex phenotypes attributable to genome-wide single nucleotide polymorphism (SNP) variation data has motivated the analysis of large datasets as well as the development of sophisticated tools to estimate heritability in these datasets. Linear mixed models (LMMs) have emerged as a key tool for heritability estimation where the parameters of the LMMs, i.e. the variance components, are related to the heritability attributable to the SNPs analyzed. Likelihood-based inference in LMMs, however, poses serious computational burdens.
机译:动机可遗传性是可以通过遗传变异解释的性状变异比例,是理解复杂表型的遗传结构以及设计和解释全基因组关联研究的重要参数。试图理解可归因于全基因组单核苷酸多态性(SNP)变异数据的复杂表型的遗传力,已激发了对大型数据集的分析,并开发了复杂的工具来估算这些数据集的遗传力。线性混合模型(LMM)已成为一种可遗传性估算的关键工具,其中LMM的参数(即方差成分)与可分析SNP的可遗传性相关。然而,LMM中基于似然性的推理带来了严重的计算负担。

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