Tiret Mathieu, Pégard Marie, Sánchez Leopoldo
BioForA, INRAE, ONF Orléans France.
Department of Ecology and Genetics Evolutionary Biology Centre Uppsala University Uppsala Sweden.
Evol Appl. 2021 Sep 21;14(11):2635-2646. doi: 10.1111/eva.13300. eCollection 2021 Nov.
In breeding, optimal contribution selection (OCS) is one of the most effective strategies to balance short- and long-term genetic responses, by maximizing genetic gain and minimizing global coancestry. Considering genetic diversity in the selection dynamic-through coancestry-is undoubtedly the reason for the success of OCS, as it avoids preliminary loss of favorable alleles. Originally formulated with the pedigree relationship matrix, global coancestry can nowadays be assessed with one of the possible formulations of the realized genomic relationship matrix. Most formulations were optimized for genomic evaluation, but few for the management of coancestry. We introduce here an alternative formulation specifically developed for genomic OCS (GOCS), intended to better control heterozygous loci, and thus better account for Mendelian sampling. We simulated a multigeneration breeding program with mate allocation and under GOCS for twenty generations, solved with quadratic programming. With the case study of , we have shown that, although the dynamic was mainly determined by the trade-off between genetic gain and genetic diversity, better formulations of the genomic relationship matrix, especially those fostering individuals carrying multiple heterozygous loci, can lead to better short-term genetic gain and a higher selection plateau.
在育种中,最优贡献选择(OCS)是平衡短期和长期遗传反应的最有效策略之一,它通过最大化遗传增益和最小化全局亲缘系数来实现。在选择动态中通过亲缘系数考虑遗传多样性无疑是OCS成功的原因,因为它避免了有利等位基因的过早丢失。全局亲缘系数最初是根据系谱关系矩阵制定的,如今可以用实现的基因组关系矩阵的一种可能形式来评估。大多数形式是针对基因组评估进行优化的,但针对亲缘系数管理的却很少。我们在此介绍一种专门为基因组OCS(GOCS)开发的替代形式,旨在更好地控制杂合位点,从而更好地考虑孟德尔抽样。我们模拟了一个多代育种计划,在GOCS下进行配偶分配并持续20代,通过二次规划求解。以……的案例研究表明,尽管动态主要由遗传增益和遗传多样性之间的权衡决定,但基因组关系矩阵的更好形式,尤其是那些促进携带多个杂合位点个体的形式,可以带来更好的短期遗传增益和更高的选择平台期。