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Preservation of Genetic Variation in a Breeding Population for Long-Term Genetic Gain

机译:长期遗传增益育种人群遗传变异的保存

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摘要

Genomic selection has been successfully implemented in plant and animal breeding. The transition of parental selection based on phenotypic characteristics to genomic selection (GS) has reduced breeding time and cost while accelerating the rate of genetic progression. Although breeding methods have been adapted to include genomic selection, parental selection often involves selection, selecting the individuals with the highest genomic estimated breeding values (GEBVs) in the hope that favorable properties will be passed to their offspring. This ensures genetic progression and delivers offspring with high genetic values. However, several favorable quantitative trait loci (QTL) alleles risk being eliminated from the breeding population during breeding. We show that this could reduce the mean genetic value that the breeding population could reach in the long term with up to 40%. In this paper, by means of a simulation study, we propose a new method for parental mating that is able to preserve the genetic variation in the breeding population, preventing premature convergence of the genetic values to a local optimum, thus maximizing the genetic values in the long term. We do not only prevent the fixation of several unfavorable QTL alleles, but also demonstrate that the genetic values can be increased by up to 15 percentage points compared with truncation selection.
机译:在植物和动物育种中成功地实施了基因组选择。父母选择的转变基于表型特征对基因组选择(GS)的育种时间和成本降低,同时加速了遗传进展速率。尽管育种方法已经适于包括基因组选择,但父母选择通常涉及选择,选择具有最高基因组估计的育种值(Gebvs)的个体,希望能够将其流动到其后代。这确保了遗传进展,并以高遗传值提供后代。然而,几个有利的定量性状基因座(QTL)等位基因在繁殖期间从育种人群中消除了风险。我们表明这可以降低育种人群可以长期达到的平均遗传值,高达40%。本文通过仿真研究,我们提出了一种新的父母交配方法,其能够保留育种群体的遗传变异,防止遗传值的过早会聚到局部最佳,从而最大化遗传值长期。我们不仅可以防止若干不利的QTL等位基因的固定,而且还证明,与截断选择相比,遗传值可以增加高达15个百分点。

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