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Effect of Trait Heritability Training Population Size and Marker Density on Genomic Prediction Accuracy Estimation in 22 bi-parental Tropical Maize Populations

机译:性状遗传力训练种群数量和标记密度对22个双亲热带玉米种群基因组预测准确度估计的影响

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摘要

Genomic selection is being used increasingly in plant breeding to accelerate genetic gain per unit time. One of the most important applications of genomic selection in maize breeding is to predict and select the best un-phenotyped lines in bi-parental populations based on genomic estimated breeding values. In the present study, 22 bi-parental tropical maize populations genotyped with low density SNPs were used to evaluate the genomic prediction accuracy (rMG) of the six trait-environment combinations under various levels of training population size (TPS) and marker density (MD), and assess the effect of trait heritability (h2), TPS and MD on rMG estimation. Our results showed that: (1) moderate rMG values were obtained for different trait-environment combinations, when 50% of the total genotypes was used as training population and ~200 SNPs were used for prediction; (2) rMG increased with an increase in h2, TPS and MD, both correlation and variance analyses showed that h2 is the most important factor and MD is the least important factor on rMG estimation for most of the trait-environment combinations; (3) predictions between pairwise half-sib populations showed that the rMG values for all the six trait-environment combinations were centered around zero, 49% predictions had rMG values above zero; (4) the trend observed in rMG differed with the trend observed in rMG/h, and h is the square root of heritability of the predicted trait, it indicated that both rMG and rMG/h values should be presented in GS study to show the accuracy of genomic selection and the relative accuracy of genomic selection compared with phenotypic selection, respectively. This study provides useful information to maize breeders to design genomic selection workflow in their breeding programs.
机译:基因组选择越来越多地用于植物育种中,以加快单位时间内的遗传增益。基因组选择在玉米育种中最重要的应用之一是根据基因组估计育种值来预测和选择双亲群体中最佳的非表型品系。在本研究中,使用低密度SNP基因型对22个双亲热带玉米种群进行基因型评估,以评估在不同水平的训练种群大小(TPS)和标记密度(MD)下六个性状-环境组合的基因组预测准确性(rMG)。 ),并评估性状遗传力(h 2 ),TPS和MD对rMG估计的影响。我们的结果表明:(1)当总基因型的50%被用作训练种群而200个SNP被用于预测时,对于不同的性状-环境组合获得了中等的rMG值; (2)rMG随着h 2 ,TPS和MD的增加而增加,相关性和方差分析均显示h 2 是最重要的因素,MD则是最不重要的因素。大多数性状-环境组合的rMG估计因素; (3)成对的半同胞种群之间的预测表明,所有六个特质-环境组合的 r MG 值都集中在零附近,其中49%的预测具有 r MG 值大于零; (4)在 r MG 中观察到的趋势与在 r MG / h中观察到的趋势不同,而 h 是预测性状遗传力的平方根,表明 r MG r在GS研究中应提供 MG / h 值,以分别显示基因组选择的准确性和基因组选择与表型选择的相对准确性。该研究为玉米育种者设计育种程序中的基因组选择工作流程提供了有用的信息。

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