Biswas Partha S, Ahmed M M Emam, Afrin Wazifa, Rahman Anisar, Shalahuddin A K M, Islam Rafiqul, Akter Fahamida, Syed Md Abu, Sarker Md Ruhul Amin, Ifterkharuddaula K M, Islam Mohammad Rafiqul
Plant Breeding Division, Bangladesh Rice Research Institute, Gazipur, Bangladesh.
International Rice Research Institute, IRRI Bangladesh Office, Dhaka, Bangladesh.
Front Genet. 2023 Feb 22;14:1083221. doi: 10.3389/fgene.2023.1083221. eCollection 2023.
Increasing selection differential and decreasing cycle time, the rate of genetic improvement can be accelerated. Creating and capturing higher genetic with higher accuracy within the shortest possible time is the prerequisite for enhancing genetic gain for any trait. Comprehensive yield testing at multi-locations at early generations together with the shortest line fixation time can expedite the rapid recycling of parents in the breeding program through recurrent selection. Genomic selection is efficient in capturing high breeding value individuals taking additive genetic effects of all genes into account with and without extensive field testing, thus reducing breeding cycle time enhances genetic gain. In the Bangladesh Rice Research Institute, GS technology together with the trait-specific marker-assisted selection at the early generation of RGA-derived breeding lines showed a prediction accuracy of 0.454-0.701 with 0.989-2.623 relative efficiency over the four consecutive years of exercise. This study reports that the application of GS together with trait-specific MAS has expedited the yield improvement by 117 kg ha·year, which is around seven-fold larger than the baseline annual genetic gain and shortened the breeding cycle by around 1.5 years from the existing 4.5 years.
增加选择差并缩短世代间隔,可以加快遗传进展的速度。在尽可能短的时间内以更高的准确性创造和捕获更高的遗传价值,是提高任何性状遗传增益的前提条件。在早期世代进行多点综合产量测试,并结合最短的株系固定时间,可以通过轮回选择加快育种计划中亲本的快速循环利用。基因组选择在考虑所有基因加性遗传效应的情况下,无论是否进行广泛的田间测试,都能有效地捕获具有高育种价值的个体,因此缩短育种周期可提高遗传增益。在孟加拉国水稻研究所,基因组选择技术与基于RGA衍生育种系早期世代的性状特异性标记辅助选择相结合,在连续四年的试验中,预测准确性为0.454 - 0.701,相对效率为0.989 - 2.623。本研究报告称,基因组选择技术与性状特异性标记辅助选择的应用使产量提高了117 kg·ha·年,这比基线年度遗传增益大约高出7倍,并将育种周期从现有的4.5年缩短了约1.5年。