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使用模拟模型在“经证实和年轻动物算法”中选择核心动物。

Selection of core animals in the Algorithm for Proven and Young using a simulation model.

作者信息

Bradford H L, Pocrnić I, Fragomeni B O, Lourenco D A L, Misztal I

机构信息

Department of Animal and Dairy Science, University of Georgia, Athens, GA, USA.

出版信息

J Anim Breed Genet. 2017 Dec;134(6):545-552. doi: 10.1111/jbg.12276. Epub 2017 May 2.

Abstract

The Algorithm for Proven and Young (APY) enables the implementation of single-step genomic BLUP (ssGBLUP) in large, genotyped populations by separating genotyped animals into core and non-core subsets and creating a computationally efficient inverse for the genomic relationship matrix (G). As APY became the choice for large-scale genomic evaluations in BLUP-based methods, a common question is how to choose the animals in the core subset. We compared several core definitions to answer this question. Simulations comprised a moderately heritable trait for 95,010 animals and 50,000 genotypes for animals across five generations. Genotypes consisted of 25,500 SNP distributed across 15 chromosomes. Genotyping errors and missing pedigree were also mimicked. Core animals were defined based on individual generations, equal representation across generations, and at random. For a sufficiently large core size, core definitions had the same accuracies and biases, even if the core animals had imperfect genotypes. When genotyped animals had unknown parents, accuracy and bias were significantly better (p ≤ .05) for random and across generation core definitions.

摘要

“已证实与年轻动物算法”(APY)通过将基因分型动物分为核心子集和非核心子集,并为基因组关系矩阵(G)创建计算效率高的逆矩阵,从而在大型基因分型群体中实现单步基因组最佳线性无偏预测(ssGBLUP)。随着APY成为基于BLUP方法的大规模基因组评估的选择,一个常见问题是如何选择核心子集中的动物。我们比较了几种核心定义来回答这个问题。模拟包含一个中等遗传力性状,涉及五代中的95,010只动物和50,000个动物基因型。基因型由分布在15条染色体上的25,500个单核苷酸多态性(SNP)组成。还模拟了基因分型错误和缺失的系谱。核心动物根据个体世代、各世代的均等代表性以及随机方式进行定义。对于足够大的核心规模,即使核心动物具有不完美的基因型,核心定义也具有相同的准确性和偏差。当基因分型动物的父母未知时,随机和跨世代核心定义的准确性和偏差显著更好(p≤0.05)。

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