Chakraborty Reena, Moreau Laurence, Dekkers Jack C M
Department of Animal Science, 225C Kildee Hall, Iowa State University Ames, IA 50011, USA.
Genet Sel Evol. 2002 Mar-Apr;34(2):145-70. doi: 10.1186/1297-9686-34-2-145.
A mathematical approach was developed to model and optimize selection on multiple known quantitative trait loci (QTL) and polygenic estimated breeding values in order to maximize a weighted sum of responses to selection over multiple generations. The model allows for linkage between QTL with multiple alleles and arbitrary genetic effects, including dominance, epistasis, and gametic imprinting. Gametic phase disequilibrium between the QTL and between the QTL and polygenes is modeled but polygenic variance is assumed constant. Breeding programs with discrete generations, differential selection of males and females and random mating of selected parents are modeled. Polygenic EBV obtained from best linear unbiased prediction models can be accommodated. The problem was formulated as a multiple-stage optimal control problem and an iterative approach was developed for its solution. The method can be used to develop and evaluate optimal strategies for selection on multiple QTL for a wide range of situations and genetic models.
开发了一种数学方法,用于对多个已知数量性状位点(QTL)和多基因估计育种值的选择进行建模和优化,以便在多代中最大化选择响应的加权总和。该模型允许具有多个等位基因的QTL之间以及任意遗传效应(包括显性、上位性和配子印记)之间存在连锁。对QTL之间以及QTL与多基因之间的配子相位不平衡进行了建模,但假设多基因方差是恒定的。对具有离散世代、雌雄差异选择和选定亲本随机交配的育种计划进行了建模。可以纳入从最佳线性无偏预测模型获得的多基因估计育种值。该问题被表述为一个多阶段最优控制问题,并开发了一种迭代方法来求解。该方法可用于为广泛的情况和遗传模型制定和评估针对多个QTL的最优选择策略。