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Simulation-based optimization of genomic selection scheme for accelerating genetic gain while preventing inbreeding depression in onion breeding

机译:基于模拟的基因组选择方案优化,以加速遗传增益,同时防止洋葱育种的繁殖抑郁症

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Genomic selection (GS) is being increasingly employed in plant breeding programs to accelerate genetic gain of economically important traits. However, its efficiency differs greatly across species, due to differences in reproduction and breeding strategies. Onion ( Allium cepa L.) is an out-crossing crop but can be easily self-pollinated. High inbreeding depression occurs, and contamination of self-pollinated seeds is unavoidable in onion breeding. Taking this into consideration, 10-year breeding programs with and without GS were simulated. In addition to general GS, we proposed GS schemes to prevent inbreeding depression by avoiding co-selection of close relatives and combining the shortening of generation time and updating of the prediction model. The results showed that general GS with shortening of generation time yielded the highest genetic gain among the selection schemes in early years. However, inbreeding increased rapidly, reaching very high levels in later years. The proposed GS combining shortening of generation time with updating of the prediction model was superior to the others in later years, as it yielded relatively high genetic gain while maintaining significantly low levels of inbreeding. These results suggested that GS can be beneficial in onion breeding, and an optimal scheme should be selected depending on the selection period.
机译:基因组选择(GS)越来越多地用于植物育种计划,以加速经济上重要的性状的遗传增益。然而,由于繁殖和育种策略的差异,它的效率在很大程度上不同。洋葱(Allium cepa L.)是一个过境的作物,但可以很容易地自我授粉。发生高近亲繁殖的抑郁症,在洋葱育种中,自授粉种子的污染是不可避免的。考虑到这一点,模拟了10年的育种计划,没有GS。除了General GS之外,我们提出了GS方案,以防止近亲繁殖抑郁症来避免近亲选择,并结合生成时间和更新预测模型的缩短。结果表明,一般GS缩短了生成时间,在早年的选择方案中产生了最高的遗传增益。然而,近亲繁殖迅速增加,后来达到了很高的水平。在以后的几年内,所提出的GS与预测模型的更新相结合的产生时间优于其他人,因为它产生了相对高的遗传增益,同时保持明显低的近亲繁殖。这些结果表明GS可以在洋葱育种中有益,并且应根据选择期间选择最佳方案。

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