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General combining ability model for genomewide selection in a biparental cross.

机译:用于双亲杂交的全基因组选择的通用结合能力模型。

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Genomewide selection within an A/B biparental cross is most advantageous if it could be effectively done before the cross is phenotyped. Our objectives were to determine if a general combining ability (GCA) model is useful for genomewide selection in an A/B cross, and to assess the influence of training population size (NGCA), number of crosses pooled into the training population (Nx), linkage disequilibrium (r2), and heritability (h2) on the prediction accuracy with the GCA model. The GCA model involved pooling 4 to 38 maize crosses with A and B as one of the parents into the training population for an A/B cross, whereas the same background (SB) model involved pooling crosses between random inbreds. Across 30 A/B test populations, the mean response to selection (R) with the GCA model was 0.19 Mg ha-1 for testcross grain yield, -6 g kg-1 for moisture, and 0.38 kg hL-1 for test weight. These R values with the GCA model were 68 to 76% of the corresponding R values with phenotypic selection (PS). The R values with the SB model were only 15 to 28% of the R values with PS. Increasing the size of the training population with random crosses from the same heterotic group was less important than including crosses with A and B as one of the parents. Our results indicated that the GCA model is routinely effective for genomewide selection within A/B crosses, before phenotyping the progeny in the cross.
机译:如果可以在对A / B双亲杂交进行表型化之前有效地进行基因组选择,则将是最有利的。我们的目标是确定通用组合能力(GCA)模型是否可用于A / B杂交的全基因组选择,并评估训练种群数量(N GCA ),杂交次数的影响合并到训练人口(N x ),连锁不平衡(r 2 )和遗传力(h 2 )的预测准确性上GCA模型。 GCA模型涉及将4至38个以A和B作为亲本之一的玉米杂交到A / B杂交的训练种群中,而同一背景(SB)模型则涉及在随机自交种之间合并杂交。在30个A / B测试人群中,GCA模型对选择杂交的平均响应(R)为0.19 Mg ha -1 ,测试杂交谷物产量为-6 g kg -1 表示水分,0.38 kg hL -1 表示测试重量。 GCA模型的这些R值是表型选择(PS)的相应R值的68%至76%。 SB模型的R值仅为PS的R值的15%至28%。与来自同一个杂种群体的随机杂交的训练种群的增加相比,不包括将A和B作为父母之一进行杂交的重要性。我们的结果表明,在对后代表型进行表型化之前,GCA模型对于A / B杂交中的全基因组选择具有常规有效性。

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