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Accuracy of genomic predictions of residual feed intake and 250-day body weight in growing heifers using 625,000 single nucleotide polymorphism markers

机译:使用625,000个单核苷酸多态性标记对生长中的小母牛剩余饲料摄入量和250天体重进行基因组预测的准确性

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摘要

Feed makes up a large proportion of variable costs in dairying. For this reason, selection for traits associated with feed conversion efficiency should lead to greater profitability of dairying. Residual feed intake (RFI) is the difference between actual and predicted feed intakes and is a useful selection criterion for greater feed efficiency. However, measuring individual feed intakes on a large scale is prohibitively expensive. A panel of DNA markers explaining genetic variation in this trait would enable cost-effective genomic selection for this trait. With the aim of enabling genomic selection for RFI, we used data from almost 2,000 heifers measured for growth rate and feed intake in Australia (AU) and New Zealand (NZ) genotyped for 625,000 single nucleotide polymorphism (SNP) markers. Substantial variation in RFI and 250-d body weight (BW250) was demonstrated. Heritabilities of RFI and BW250 estimated using genomic relationships among the heifers were 0.22 and 0.28 in AU heifers and 0.38 and 0.44 in NZ heifers, respectively. Genomic breeding values for RFI and BW250 were derived using genomic BLUP and 2 Bayesian methods (BayesA, BayesMulti). The accuracies of genomic breeding values for RFI were evaluated using cross-validation. When 624,930 SNP were used to derive the prediction equation, the accuracies averaged 0.37 and 0.31 for RFI in AU and NZ validation data sets, respectively, and 0.40 and 0.25 for BW250 in AU and NZ, respectively. The greatest advantage of using the full 624,930 SNP over a reduced panel of 36,673 SNP (the widely used BovineSNP50 array) was when the reference population included only animals from either the AU or the NZ experiment. Finally, the Bayesian methods were also used for quantitative trait loci detection. On chromosome 14 at around 25 Mb, several SNP closest to PLAG1 (a gene believed to affect stature in humans and cattle) had an effect on BW250 in both AU and NZ populations. In addition, 8 SNP with large effects on RFI were located on chromosome 14 at around 35.7 Mb. These SNP may be associated with the gene NCOA2, which has a role in controlling energy metabolism.
机译:饲料在乳业的可变成本中占很大比例。因此,选择与饲料转化效率相关的性状应该可以提高乳制品的盈利能力。剩余饲料摄入量(RFI)是实际饲料摄入量与预测饲料摄入量之差,是提高饲料效率的有用选择标准。但是,大规模测量单个采食量是非常昂贵的。一组解释该性状遗传变异的DNA标记将使该性状的经济高效的基因组选择成为可能。为了能够进行RFI的基因组选择,我们使用了来自近2,000个小母牛的数据,这些小母牛在澳大利亚(AU)和新西兰(NZ)的生长速度和采食量上进行了基因分型,分别对625,000个单核苷酸多态性(SNP)标记进行了分型。证实了RFI和250天体重(BW250)的显着变化。利用小母牛之间的基因组关系估计的RFI和BW250的遗传力在AU小母牛中分别为0.22和0.28,在NZ小母牛中分别为0.38和0.44。 RFI和BW250的基因组育种值是使用基因组BLUP和2贝叶斯方法(BayesA,BayesMulti)得出的。使用交叉验证评估RFI的基因组育种值的准确性。当使用624,930个SNP来推导预测方程时,AU和NZ验证数据集中的RFI的平均准确度分别为0.37和0.31,AU和NZ中的BW250的平均准确度分别为0.40和0.25。使用完整的624,930个SNP而不是减少的36,673个SNP(广泛使用的BovineSNP50阵列),最大的优势是当参考种群仅包括来自AU或NZ实验的动物时。最后,贝叶斯方法也用于定量性状基因座检测。在25 Mb左右的第14号染色体上,最接近PLAG1(一种认为会影响人和牛身高的基因)的几个SNP对AU和NZ人群的BW250都有影响。另外,对RFI有较大影响的8个SNP位于第14号染色体上,约为35.7 Mb。这些SNP可能与基因NCOA2相关,后者在控制能量代谢中具有作用。

著录项

  • 来源
    《Journal of dairy science》 |2012年第4期|p.2108-2119|共12页
  • 作者单位

    Biosciences Research Division, Department of Primary Industries Victoria, Bundoora, VIC 3083, Australia,Dairy Futures Cooperative Research Centre, Bundoora, VIC 3083, Australia;

    LIC, Private Bag 3016, Hamilton 3240, New Zealand;

    Biosciences Research Division, Department of Primary Industries Victoria, Bundoora, VIC 3083, Australia,Dairy Futures Cooperative Research Centre, Bundoora, VIC 3083, Australia;

    ViaLactia Biosciences (NZ) Ltd., PO Box 109-185, Auckland, New Zealand;

    DairyNZ, Private Bag 3221, Hamilton 3240, New Zealand;

    DairyNZ, Private Bag 3221, Hamilton 3240, New Zealand;

    Department of Primary Industries, Ellinbank, VIC 3820, Australia;

    Department of Primary Industries, Tatura, VIC 3616, Australia;

    LIC, Private Bag 3016, Hamilton 3240, New Zealand;

    Biosciences Research Division, Department of Primary Industries Victoria, Bundoora, VIC 3083, Australia,Dairy Futures Cooperative Research Centre, Bundoora, VIC 3083, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    feed conversion efficiency; residual feed intake; genomic selection;

    机译:饲料转化效率;剩余饲料摄入量;基因组选择;
  • 入库时间 2022-08-17 23:24:23

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