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Short communication: The combined use of linkage disequilibrium–based haploblocks and allele frequency–based haplotype selection methods enhances genomic evaluation accuracy in dairy cattle

机译:短期通信:联合使用基于不平衡的HaploOcks和等位基因频率的单倍型选择方法提高了乳制品的基因组评价精度

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摘要

The construction and use of haploblocks [adjacent single nucleotide polymorphisms (SNP) in strong linkage disequilibrium] for genomic evaluation is advantageous, because the number of effects to be estimated can be reduced without discarding relevant genomic information. Furthermore, haplotypes (the combination of 2 or more SNP) can increase the probability of capturing the quantitative trait loci effect compared with individual SNP markers. With regards to haplotypes, the allele frequency parameter is also of interest, because as a selection criterion, it allows the number of rare alleles to be reduced, and the effects of those alleles are usually difficult to estimate. We have proposed a simple pipeline that simultaneously incorporates linkage disequilibrium and allele frequency information in genomic evaluation, and here we present the first results obtained with this procedure. We used a population of 2,235 progeny-tested bulls from the Montbéliarde breed for the tests. Phenotype data were available in the form of daughter yield deviations on 5 production traits, and genotype data were available from the 50K SNP chip. We conducted a classical validation study by splitting the population into training (80% oldest animals) and validation (20% youngest animals) sets to emulate a real-life scenario in which the selection candidates had no available phenotype data. We measured all reported parameters for the validation set. Our results proved that the proposed method was indeed advantageous, and that the accuracy of genomic evaluation could be improved. Compared with results from a genomic BLUP analysis, correlations between daughter yield deviations (a proxy for true) and genomic estimated breeding values increased by an average of 2.7 percentage points for the 5 traits. Inflation of the genomic evaluation of the selection candidates was also significantly reduced. The proposed method outperformed the other SNP and haplotype-based tests we had evaluated in a previous study. The combination of linkage disequilibrium-based haploblocks and allele frequency-based haplotype selection methods is a promising way to improve the efficiency of genomic evaluation. Further work is needed to optimize each step in the proposed analysis pipeline.
机译:对于基因组评估,HaploOcks [相邻的单核苷酸多态性(SNP)的施工和用途是有利的,因为可以减少估计的效果数而不会丢弃相关的基因组信息。此外,单倍型(2个或更多个SNP的组合)可以增加与单独的SNP标记相比捕获定量性状基因效果的概率。关于单倍型,等位基因频率参数也感兴趣,因为作为选择标准,它允许减少稀有等位基因的数量,并且这些等位基因的效果通常难以估计。我们提出了一种简单的管道,同时含有基因组评估中的联动不平衡和等位基因频率信息,在这里我们介绍了使用该程序获得的第一个结果。我们使用了来自蒙特巴尔德品种的2,235个后代测试的公牛的人口进行了测试。表型数据以5个生产性状的雌产率偏差的形式可用,并从50K SNP芯片获得基因型数据。我们通过将人口分成培训(80%最古老的动物)和验证(最年轻的动物)集合来进行古典验证研究,以模仿选择候选者没有可用的表型数据。我们测量了验证集的所有报告参数。我们的研究结果证明,该方法确实有利,并且可以提高基因组评估的准确性。与基因组的分析结果相比,子屈服偏差之间的相关性(True的代理)和基因组估计的育种值的平均值增加了5个特征的2.7个百分点。选择候选者的基因组评价的膨胀也显着降低。所提出的方法优于我们在先前研究中评估的其他基于SNP和单倍型的测试。连锁不平衡的HAPLOOCKS和等位基因基于频率的单倍型选择方法是提高基因组评价效率的有希望的方法。需要进一步的工作来优化所提出的分析管道中的每个步骤。

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