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Optimizing purebred selection for crossbred performance using QTL with different degrees of dominance

机译:使用具有不同优势度的QTL优化纯种选择以提高杂交性能

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摘要

A method was developed to optimize simultaneous selection for a quantitative trait with a known QTL within a male and a female line to maximize crossbred performance from a two-way cross. Strategies to maximize cumulative discounted response in crossbred performance over ten generations were derived by optimizing weights in an index of a QTL and phenotype. Strategies were compared to selection on purebred phenotype. Extra responses were limited for QTL with additive and partial dominance effects, but substantial for QTL with over-dominance, for which optimal QTL selection resulted in differential selection in male and female lines to increase the frequency of heterozygotes and polygenic responses. For over-dominant QTL, maximization of crossbred performance one generation at a time resulted in similar responses as optimization across all generations and simultaneous optimal selection in a male and female line resulted in greater response than optimal selection within a single line without crossbreeding. Results show that strategic use of information on over-dominant QTL can enhance crossbred performance without crossbred testing.
机译:开发了一种方法来优化同时选择雄性和雌性品系中具有已知QTL的数量性状,以最大限度地提高双向杂交的杂交性能。通过优化QTL和表型指标的权重,得出了使十代杂交表现中的累积折扣响应最大化的策略。将策略与选择纯种表型进行比较。对于具有加性和部分优势效应的QTL,额外的响应受到限制,但是对于具有过度支配性的QTL,则存在大量响应,为此,最佳QTL选择导致雄性和雌性品系的差异选择,从而增加杂合子和多基因响应的频率。对于占优势的QTL,一次最大化杂交性能会产生与所有世代最佳化相似的响应,而在雄性和雌性品系中同时进行的最佳选择所产生的响应要比没有杂交的单个系中的最佳选择要大。结果表明,战略性地使用有关过多QTL的信息可以提高杂交性能,而无需进行杂交测试。

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