The speed breeding technology of five generations per year in cotton.

IF 4.4 1区 农林科学 Q1 AGRONOMY
Guoning Wang, Zhengwen Sun, Jun Yang, Qingming Ma, Xingyi Wang, Huifeng Ke, Xiao Huang, Li Zhang, Gengyao Wang, Qishen Gu, Dongmei Zhang, Jinhua Wu, Yan Zhang, Liqiang Wu, Guiyin Zhang, Zhiying Ma, Xingfen Wang
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Abstract

Key message: Developed a speed breeding technique for cotton that enables up to five generations per year using optimized spectral conditions and immature embryo culture, and created new materials with iaaM gene. Shortening the breeding cycle is an effective way to accelerate crop genetic improvement. Previously we developed an integrated breeding technology for cotton that enabled three to four breeding cycles per year. Here, to further shorten the breeding time, we optimized the light spectrum conditions for cotton development and culture conditions for immature embryo developing into seedling. Under optimized spectrum conditions, JSh929 and ND601 plants exhibited the visible flower buds at 19 and 21 days after emergence (DAE), and the first flower bloomed at around 45 and 46 DAE. Using the optimized immature embryo culture technique, immature embryos of 25-30 days after pollination could develop into fertile plants with cotyledon unfolding at 6 days after culture in vitro. The improved speed breeding technique shortened cotton breeding cycle from about 130 days to a range from 71 to 85 days, an average of 79.5 days, achieving up to around five generations per year. Using this optimized system, we transferred iaaM gene into the high-yield and disease-resistant cultivar JND24, and BC4F3 progenies were obtained within 1.5 years. In addition, the JND24-i3 line was selected with increased lint percentage and improved Micronaire value. These results demonstrate that the optimized speed breeding system offers a rapid and effective way to improve traits of cotton.

棉花年5代速成育种技术。
关键信息:开发了棉花快速育种技术,利用优化的光谱条件和未成熟胚培养,每年可达到五代,并创造了含有iaaM基因的新材料。缩短育种周期是加快作物遗传改良的有效途径。以前,我们开发了一种棉花综合育种技术,每年可以进行三到四个育种周期。为了进一步缩短育种时间,我们对棉花发育的光谱条件和未成熟胚成苗的培养条件进行了优化。在优化的光谱条件下,JSh929和ND601植株在萌发后19天和21天可见花蕾,第一朵花在萌发后45天和46天左右开花。采用优化后的未成熟胚培养技术,授粉后25 ~ 30 d的未成熟胚在离体培养后6 d发育为可育植株,子叶展开。改良的快速育种技术将棉花育种周期从130天左右缩短到71 ~ 85天,平均79.5天,每年可达5代左右。利用优化后的体系,将iaaM基因转入高产抗病品种JND24, 1.5年内获得BC4F3后代。此外,选育的JND24-i3系衣分增加,马克隆值提高。结果表明,优化的快速育种系统为棉花性状改良提供了一条快速有效的途径。
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来源期刊
CiteScore
9.60
自引率
7.40%
发文量
241
审稿时长
2.3 months
期刊介绍: Theoretical and Applied Genetics publishes original research and review articles in all key areas of modern plant genetics, plant genomics and plant biotechnology. All work needs to have a clear genetic component and significant impact on plant breeding. Theoretical considerations are only accepted in combination with new experimental data and/or if they indicate a relevant application in plant genetics or breeding. Emphasizing the practical, the journal focuses on research into leading crop plants and articles presenting innovative approaches.
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