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首页> 外文期刊>The Journal of Heredity >Effect of Hidden Relatedness on Single-Step Genetic Evaluation in an Advanced Open-Pollinated Breeding Program
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Effect of Hidden Relatedness on Single-Step Genetic Evaluation in an Advanced Open-Pollinated Breeding Program

机译:隐性相关性对高级开放式授粉育种计划中单步基因评价的影响

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Open-pollinated (OP) mating is frequently used in forest tree breeding due to the relative temporal and financial efficiency of the approach. The trade-off is the lower precision of the estimated genetic parameters. Pedigree/sib-ship reconstruction has been proven as a tool to correct and complete pedigree information and to improve the precision of genetic parameter estimates. Our study analyzed an advanced generation Eucalyptus population from an OP breeding program using single-step genetic evaluation. The relationship matrix inferred from sib-ship reconstruction was used to rescale the marker-based relationship matrix (G matrix). This was compared with a second scenario that used rescaling based on the documented pedigree. The proposed single-step model performed better with respect to both model fit and the theoretical accuracy of breeding values. We found that the prediction accuracy was superior when using the pedigree information only when compared with using a combination of the pedigree and genomic information. This pattern appeared to be mainly a result of accumulated unrecognized relatedness over several breeding cycles, resulting in breeding values being shrunk toward the population mean. Using biased, pedigree-based breeding values as the base with which to correlate predicted GEBVs, resulted in the underestimation of prediction accuracies. Using breeding values estimated on the basis of sib-ship reconstruction resulted in increased prediction accuracies of the genotyped individuals. Therefore, selection of the correct base for estimation of prediction accuracy is critical. The beneficial impact of sib-ship reconstruction using G matrix rescaling was profound, especially in traits with inbreeding depression, such as stem diameter.
机译:由于这种方法的相对时间和财务效率,森林树育种经常用于开放式授粉(OP)交配。权衡是估计遗传参数的较低精度。已被证明谱系/ SIB-Ship重建作为纠正和完整谱系信息的工具,并提高遗传参数估计的精度。我们的研究分析了使用单步基因评估的op繁殖计划的先进生成桉树人口。从SIB-船重建推断的关系矩阵用于重新归类基于标记的关系矩阵(G矩阵)。将其与基于记录的血统的重新分配使用的第二种情况进行了比较。所提出的单步模型对于模型适合和育种值的理论精度更好地执行。我们发现,当使用谱系和基因组信息的组合相比时,仅当使用血统信息时,预测精度是优越的。这种模式似乎主要是累积未被识别的相关性与多种育种循环产生的结果,导致育种值朝人口缩小。使用偏置的基于血统的繁殖值作为与预测GEBV相关的基础,导致低估预测精度。使用基于SIB船重建估计的育种值导致基因分型个体的预测准确性增加。因此,选择用于估计预测精度的正确基座是至关重要的。使用G矩阵重构的SIB船重建的有益影响是深刻的,特别是在具有近亲繁殖的抑郁症的特征中,例如茎直径。

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