One-line hybrid rice with high-efficiency synthetic apomixis and near-normal fertility
文献类型: 外文期刊
第一作者: Dan, Junhao
作者: Dan, Junhao;Zhan, Yijie;Tian, Junyou;Deng, Huafeng;Cao, Mengliang;Xia, Yumei;Tang, Ning;Cao, Mengliang;Wang, Yao;Cao, Mengliang;Cao, Mengliang
作者机构:
关键词: One-line hybrid rice; Apomixis; Multiple-embryos; Atavism
期刊名称:PLANT CELL REPORTS ( 影响因子:6.2; 五年影响因子:5.9 )
ISSN: 0721-7714
年卷期: 2024 年 43 卷 3 期
页码:
收录情况: SCI
摘要: Key messageHigh-frequency clonal seeds and near-normal fertility were obtained by engineering synthetic apomixis in hybrid rice.AbstractThe one-line strategy, with the advantage of unnecessary seed production, is the final stage for the hybrid rice development and can be achieved through the fixation of heterosis via artificially inducing apomixis. Recently, synthetic apomixis has been generated in rice by combining MiMe (Mitosis instead of Meiosis) with either the ectopic expression of BABY BOOM (BBM1 or BBM4) or mutation of MATRILINEAL (MTL), resulting in over 95.00% of clonal seeds. However, the frequency of clonal seeds was only 29.20% when AtDD45 promoter was used to drive BBM1. In addition, achieving both a high frequency of clonal seeds and near-normal fertility simultaneously had been elusive in earlier strategies. In this study, using AtDD45 promoter to drive BBM1 expression in combination with the MiMe mutant resulted in the apomixis frequency as high as 98.70%. Even more, employing fusion promoters (AtMYB98_AtDD1_OsECA1-like1) to drive WUS expression in combination with pAtDD45:BBM1 and MiMe could produce clonal seeds at rates of up to 98.21%, the highest seed setting rate reached to 83.67%. Multiple-embryos were observed in clonal lines at a frequency ranging from 3.37% to 60.99%. Transmission of the high frequency of apomixis through skipped generations (atavism) was identified in two clonal lines, even though it remained stable in the majority of clonal lines. These findings significantly advance the pursuit of fixed heterosis in rice through synthetic apomixis, edging closer to its agricultural application.
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