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首页> 外文期刊>Genetics, selection, evolution >Impact of QTL properties on the accuracy of multi-breed genomic prediction
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Impact of QTL properties on the accuracy of multi-breed genomic prediction

机译:QTL特性对多品种基因组预测准确性的影响

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Background Although simulation studies show that combining multiple breeds in one reference population increases accuracy of genomic prediction, this is not always confirmed in empirical studies. This discrepancy might be due to the assumptions on quantitative trait loci (QTL) properties applied in simulation studies, including number of QTL, spectrum of QTL allele frequencies across breeds, and distribution of allele substitution effects. We investigated the effects of QTL properties and of including a random across- and within-breed animal effect in a genomic best linear unbiased prediction (GBLUP) model on accuracy of multi-breed genomic prediction using genotypes of Holstein-Friesian and Jersey cows. Methods Genotypes of three classes of variants obtained from whole-genome sequence data, with moderately low, very low or extremely low average minor allele frequencies (MAF), were imputed in 3000 Holstein-Friesian and 3000 Jersey cows that had real high-density genotypes. Phenotypes of traits controlled by QTL with different properties were simulated by sampling 100 or 1000 QTL from one class of variants and their allele substitution effects either randomly from a gamma distribution, or computed such that each QTL explained the same variance, i.e. rare alleles had a large effect. Genomic breeding values for 1000 selection candidates per breed were estimated using GBLUP modelsincluding a random across- and a within-breed animal effect. Results For all three classes of QTL allele frequency spectra, accuracies of genomic prediction were not affected by the addition of 2000 individuals of the other breed to a reference population of the same breed as the selection candidates. Accuracies of both single- and multi-breed genomic prediction decreased as MAF of QTL decreased, especially when rare alleles had a large effect. Accuracies of genomic prediction were similar for the models with and without a random within-breed animal effect, probably because of insufficient power to separate across- and within-breed animal effects. Conclusions Accuracy of both single- and multi-breed genomic prediction depends on the properties of the QTL that underlie the trait. As QTL MAF decreased, accuracy decreased, especially when rare alleles had a large effect. This demonstrates that QTL properties are key parameters that determine the accuracy of genomic prediction.
机译:背景技术尽管模拟研究表明,将多个品种组合到一个参考种群中可以提高基因组预测的准确性,但是在经验研究中并不总是能够证实这一点。这种差异可能是由于对模拟研究中应用的定量性状基因座(QTL)属性的假设所致,包括QTL的数量,品种间QTL等位基因频率的频谱以及等位基因替代效应的分布。我们调查了QTL特性的影响,以及在基因组最佳线性无偏预测(GBLUP)模型中使用Holstein-Friesian和Jersey奶牛的基因型对多品种基因组预测准确性进行的随机跨种和种内动物影响。方法从3000个具有真正的高密度基因型的荷斯坦-弗里斯牛和3000个泽西奶牛中推算从全基因组序列数据中获得的三类变体的基因型,它们具有中等低,极低或极低的平均未成年人等位基因频率。通过从一类变体中采样100或1000个QTL来模拟具有不同特性的QTL控制的性状的表型,并从γ分布中随机抽取其等位基因替代效应,或进行计算,使每个QTL解释相同的方差,即稀有等位基因具有效果大。使用GBLUP模型估算每个品种1000个选择候选物的基因组育种值,其中包括随机的跨种和种内动物效应。结果对于所有三类QTL等位基因频谱,将2000个其他品种的个体添加到与选择候选对象相同品种的参考群体中,不会影响基因组预测的准确性。随着QTL的MAF降低,单品种和多品种基因组预测的准确性均下降,尤其是当稀有等位基因具有较大影响时。带有和不带有随机内部动物效应的模型的基因组预测准确性相似,这可能是因为没有足够的能力来区分跨动物和内部动物效应。结论单品种和多品种基因组预测的准确性均取决于构成该特征的QTL的特性。随着QTL MAF的降低,准确性降低,尤其是当稀有等位基因具有较大影响时。这表明QTL属性是决定基因组预测准确性的关键参数。

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