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Development and characterization of transgenic dominant male sterile rice toward an outcross-based breeding system

机译:转基因显性雄性无菌稻朝向卵育育种系统的发展与鉴定

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摘要

Genomic selection is attracting attention in the field of crop breeding. To apply genomic selection effectively for autogamous (self-pollinating) crops, an efficient outcross system is desired. Since dominant male sterility is a powerful tool for easy and successive outcross of autogamous crops, we developed transgenic dominant male sterile rice (Oryza sativa L.) using the barnase gene that is expressed by the tapetum-specific promoter BoA9. Barnase-induced male sterile rice No. 10 (BMS10) was selected for its stable male sterility and normal growth characteristics. The BMS 10 flowering habits, including heading date, flowering date, and daily flowering time of BMS10 tended to be delayed compared to wild type. When BMS10 and wild type were placed side-by-side and crossed under an open-pollinating condition, the seed-setting rate was &1.5%. When the clipping method was used to avoid the influence of late flowering habits, the seed-setting rate of BMS10 increased to a maximum of 86.4%. Although flowering synchronicity should be improved to increase the seed-setting rate, our results showed that this system can produce stable transgenic male sterility with normal female fertility in rice. The transgenic male sterile rice would promote a genomic selection-based breeding system in rice.
机译:基因组选择在作物育种领域引起了注意力。为了有效地施加基因组选择,用于自动纵向(自粉型)作物,需要一种有效的铰接系统。由于优势雄性不育是一种强大的工具,用于容易和连续的自然作物的折叠,我们使用由塔皮酶特异性启动子BoA9表达的晶片基因开发了转基因显性雄性无菌水稻(Oryza Sativa L.)。选择晶态诱导的雄性无菌水稻No.10(BMS10),用于其稳定的雄性不育性和正常生长特性。与野生型相比,BMS 10开花习惯,包括BMS10的日期,开花日期和每日开花时间往来延迟。当BMS10和野生型并排放置并在开放式授粉条件下交叉时,种子设定率为& LT; 1.5%。当使用剪切方法来避免延迟开花习性的影响时,BMS10的种子设定率最高为86.4%。虽然应该改善开花同步性以增加种子凝固率,但我们的结果表明,该系统可以产生稳定的转基因雄性不育,在水稻中具有正常的女性生育能力。转基因雄性无菌水稻将促进水稻中基因组织的育种系统。

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