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基于模拟的洋葱育种基因组选择方案优化,以加速遗传进展并防止近亲衰退。

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

作者信息

Sekine Daisuke, Yabe Shiori

机构信息

Institute of Vegetable and Floriculture Science, National agriculture and Food Research Organization, Tsu, Mie 514-2392, Japan.

Institute of Crop Science, National Agriculture and Food Research Organization, Tsukuba, Ibaraki 305-8518, Japan.

出版信息

Breed Sci. 2020 Dec;70(5):594-604. doi: 10.1270/jsbbs.20047. Epub 2020 Nov 17.

Abstract

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 ( 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.

摘要

基因组选择(GS)在植物育种计划中越来越多地被采用,以加速经济重要性状的遗传增益。然而,由于繁殖和育种策略的差异,其效率在不同物种间差异很大。洋葱(L.)是一种异花授粉作物,但很容易自花授粉。在洋葱育种中会出现高度的近交衰退,且自花授粉种子的污染不可避免。考虑到这一点,模拟了有无GS的10年育种计划。除了常规的GS,我们还提出了GS方案,通过避免近亲的共同选择以及结合缩短世代时间和更新预测模型来防止近交衰退。结果表明,在早期的选择方案中,结合缩短世代时间的常规GS产生了最高的遗传增益。然而,近亲繁殖迅速增加,在后期达到非常高的水平。所提出的将缩短世代时间与更新预测模型相结合的GS在后期优于其他方案,因为它在保持显著低水平近亲繁殖的同时产生了相对较高的遗传增益。这些结果表明,GS在洋葱育种中可能是有益的,并且应根据选择时期选择最佳方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8284/7878936/435d88e26e77/70_594-g001.jpg

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