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Most of the long-term genetic gain from optimum-contribution selection can be realised with restrictions imposed during optimisation

机译:优化贡献的大部分长期遗传收益可以在优化过程中施加限制的情况下实现

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Background We tested the hypothesis that optimum-contribution selection (OCS) with restrictions imposed during optimisation realises most of the long-term genetic gain realised by OCS without restrictions. Methods We used stochastic simulation to estimate long-term rates of genetic gain realised by breeding schemes that applied OCS without and with restrictions imposed during optimisation, where long-term refers to generations 23 to 25 (approximately). Six restrictions were imposed. Five of these removed solutions from the solution space. The sixth removed records of selection decisions made at earlier selection times. We also simulated a conventional breeding scheme with truncation selection as a reference point. Generations overlapped, selection was for a single trait, and the trait was observed for all selection candidates prior to selection. Results OCS with restrictions realised 67 to 99% of the additional gain realised by OCS without restrictions, where additional gain was the difference in the long-term rates of genetic gain realised by OCS without restrictions and our reference point with truncation selection. The only exceptions were those restrictions that removed all solutions near the optimum solution from the solution space and the restriction that removed records of selection decisions made at earlier selection times. Imposing these restrictions realised only ?12 to 46% of the additional gain. Conclusions Most of the long-term genetic gain realised by OCS without restrictions can be realised by OCS with restrictions imposed during optimisation, provided the restrictions do not remove all solutions near the optimum from the solution space and do not remove records of earlier selection decisions. In breeding schemes where OCS cannot be applied optimally because of biological and logistical restrictions, OCS with restrictions provides a useful alternative. Not only does it realise most of the long-term genetic gain, OCS with restrictions enables OCS to be tailored to individual breeding schemes.
机译:背景我们测试了以下假设,即在优化过程中施加限制的最佳贡献选择(OCS)可以实现不受限制的OCS实现的大部分长期遗传收益。方法我们使用随机模拟来评估采用OCS的育种方案实现的长期遗传增益率,OCS在优化过程中不加限制也没有限制,其中长期涉及第23至25代(大约)。施加了六个限制。这些解决方案中有五个从解决方案空间中删除。第六个删除了在较早的选择时间做出的选择决定的记录。我们还用截断选择作为参考点模拟了常规育种方案。世代重叠,选择是针对单个性状,并且在选择之前对所有选择候选物观察了性状。结果带限制的OCS实现了无限制的OCS实现的额外收益的67%至99%,其中,附加收益是无限制的OCS实现的长期遗传收益率与我们选择截断的参考点之间的差。唯一的例外是那些限制从解决方案空间中删除了所有与最佳解决方案接近的解决方案,以及这些限制删除了在较早的选择时间做出的选择决策记录。施加这些限制仅实现了额外收益的12%至46%。结论OCS在不受限制的情况下实现的大部分长期遗传增益都可以通过在优化过程中施加限制的OCS来实现,前提是这些限制不会从解决方案空间中移除所有接近最优值的解决方案,也不会移除早期选择决策的记录。在由于生物学和后勤限制而无法最佳应用OCS的育种方案中,带限制的OCS提供了一种有用的替代方法。它不仅实现了大部分的长期遗传增益,而且受限制的OCS使得OCS可以针对单个育种方案进行定制。

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