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Mating animals by minimising the covariance between ancestral contributions generates less inbreeding without compromising genetic gain in breeding schemes with truncation selection.

机译:通过最小化祖先贡献之间的协方差来交配动物,在不影响采用截断选择的育种方案中获得遗传增益的情况下,近交繁殖较少。

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We reasoned that mating animals by minimising the covariance between ancestral contributions (MCAC mating) will generate less inbreeding and at least as much genetic gain as minimum-coancestry mating in breeding schemes where the animals are truncation-selected. We tested this hypothesis by stochastic simulation and compared the mating criteria in hierarchical and factorial breeding schemes, where the animals were selected based on breeding values predicted by animal-model BLUP. Random mating was included as a reference-mating criterion. We found that MCAC mating generated 4% to 8% less inbreeding than minimum-coancestry mating in the hierarchical and factorial breeding schemes without any loss in genetic gain. Moreover, it generated upto 28% less inbreeding and about 3% more genetic gain than random mating. The benefits of MCAC mating over minimum-coancestry mating are worthwhile because they can be achieved without extra costs or practical constraints. MCAC mating merely uses pedigree information to pair the animals more appropriately and is clearly a worthy alternative to minimum-coancestry mating and probably any other mating criterion. We believe, therefore, that MCAC mating should be used in breeding schemes where pedigree information is available.
机译:我们认为,通过最小化祖先贡献之间的协方差(MCAC交配)来交配动物,与选择截短动物的育种方案中的最小交配法交配相比,近亲繁殖和遗传增益最少。我们通过随机模拟测试了这一假设,并在分级和因子育种方案中比较了交配标准,在该方案中,根据动物模型BLUP预测的育种值选择了动物。随机交配作为参考交配标准。我们发现,在分级和因子育种方案中,MCAC交配的近交近交比近亲交配少4%至8%,而遗传增益没有任何损失。而且,与随机交配相比,它产生的近交繁殖减少多达28%,遗传增益增加约3%。 MCAC交配相对于最低配偶交配的好处是值得的,因为它们无需额外的成本或实际约束即可实现。 MCAC交配仅使用系谱信息来更适当地配对动物,并且显然是最小共生交配和可能的其他任何交配标准的值得选择。因此,我们认为MCAC交配应在可获得系谱信息的育种方案中使用。

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