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首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Genomic selection efficiency and a priori estimation of accuracy in a structured dent maize panel
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Genomic selection efficiency and a priori estimation of accuracy in a structured dent maize panel

机译:基因组选择效率和结构凹部玉米面板精度的先验估计

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Key messagePopulation structure affects genomic selection efficiency as well as the ability to forecast accuracy using standard GBLUP.AbstractGenomic prediction models usually assume that the individuals used for calibration belong to the same population as those to be predicted. Most of the a priori indicators of precision, such as the coefficient of determination (CD), were derived from those same models. But genetic structure is a common feature in plant species, and it may impact genomic selection efficiency and the ability to forecast prediction accuracy. We investigated the impact of genetic structure in a dent maize panel (Amaizing Dent) using different scenarios including within- or across-group predictions. For a given training set size, the best accuracies were achieved when predicting individuals using a model calibrated on the same genetic group. Nevertheless, a diverse training set representing all the groups had a certain predictive efficiency for all the validation sets, and adding extra-group individuals was almost always beneficial. It underlines the potential of sucha generic training set for dent maize genomic selection applications. Alternative prediction models, taking genetic structure explicitly into account, did not improve the prediction accuracy compared to GBLUP. We also investigated the ability of different indicators of precision to forecast accuracy in the within- or across-group scenarios. There was a global encouraging trend of the CD to differentiate scenarios, although there were specific combinations of target populations and traits where the efficiency of this indicator proved to be null. One hypothesis to explain such erratic performances is the impact of genetic structure through group-specific allele diversity at QTLs rather than group-specific allele effects.
机译:关键邮件迁移结构影响基因组选择效率以及使用标准GBLUP预测准确性的能力.AbstractGenomic预测模型通常假设用于校准的个体属于与要预测的人群相同的人群。大多数精度的先验指示符,例如确定系数(CD),源自相同的模型。但遗传结构是植物物种的常见特征,可能影响基因组选择效率和预测预测准确性的能力。我们使用包括在或跨组预测在内的不同情景来研究遗传结构在牙齿玉米面板(Amaizing Dent)中的影响。对于给定的训练集规模,当使用在同一遗传组上校准的模型预测个体时,可以获得最佳精度。尽管如此,代表所有组的多样化培训集对所有验证集具有一定的预测效率,并添加了额外的人几乎总是有益的。它强调了牙齿玉米基因组选择应用所在的通用训练的潜力。与GBLUP相比,明确考虑遗传结构的替代预测模型并未提高预测准确性。我们还调查了不同指标精确指标在群体内部方案中预测准确性的能力。 CD的全球令人鼓舞的趋势,以区分场景,尽管目标人群和特征的特定组合,但该指标的效率被证明是无效的。解释这种不稳定性能的一个假设是遗传结构通过QTLS的特异性等位基因多样性的影响而不是群体特异性等位基因效应。

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