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一种最小基因组设计,以最大程度地确保亚种间杂交水稻的育性。

A minimal genome design to maximally guarantee fertile inter-subspecific hybrid rice.

作者信息

Zhou Penghui, Wang Zhengji, Zhu Xingchen, Tang Yao, Ye Liang, Yu Huihui, Li Yating, Zhang Ningke, Liu Ting, Wang Tian, Wu Yuying, Cao Dengyun, Chen Yuan, Li Xu, Zhang Qinglu, Xiao Jinghua, Yu Sibin, Zhang Qifa, Mi Jiaming, Ouyang Yidan

机构信息

National Key Laboratory of Crop Genetic Improvement and National Centre of Plant Gene Research (Wuhan), Hubei Hongshan Laboratory, Huazhong Agricultural University, Wuhan 430070, China.

National Key Laboratory of Crop Genetic Improvement and National Centre of Plant Gene Research (Wuhan), Hubei Hongshan Laboratory, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

Mol Plant. 2023 Apr 3;16(4):726-738. doi: 10.1016/j.molp.2023.02.009. Epub 2023 Feb 26.

Abstract

Hybrid rice has made considerable contributions to achieve the ambitious goal of food security for the world's population. Hybrid rice from indica/xian and japonica/geng subspecies shows much higher heterosis and is thereby an important innovation in promoting rice production in the next decade. However, such inter-subspecific hybrid rice has long suffered from serious hybrid sterility, which is a major challenge that needs to be addressed. In this study, we performed a genome design strategy to produce fertile inter-subspecific hybrid by creation of wide compatibility varieties that are able to overcome hybrid sterility. Based on combined genetic analyses in two indica-japonica crosses, we determined that four hybrid sterility loci, S5, f5, pf12 and Sc, are the major QTLs controlling inter-subspecific hybrid sterility and thus the minimal targets that can be manipulated for breeding sub-specific hybrid rice. We then cloned the pf12 locus, one of the most effective loci for hybrid male sterility, by map-based cloning, and showed that artificial disruption of pf12A gene at this locus could successfully rescue hybrid fertility. We further dissected the genetic basis of wide compatibility using three pairwise crosses from a wide-compatibility variety Dular and representative indica and japonica varieties. On this basis, we constructed and assembled different combinations of naturally compatible alleles of four loci, S5, Sc, pf12, and f5, and found that the improved lines could fully recover pollen and embryo sac fertility in test-crossed Fs, thereby completely fulfilling the demands of inter-subspecific hybrid spikelet fertility in agricultural production. This breeding scheme would facilitate redesign of future inter-subspecific hybrid rice with a higher yield potential.

摘要

杂交水稻为实现全球人口粮食安全这一宏伟目标做出了巨大贡献。籼稻/籼亚种和粳稻/粳亚种的杂交水稻表现出更高的杂种优势,因此是推动未来十年水稻生产的一项重要创新。然而,这种亚种间杂交水稻长期以来一直遭受严重的杂种不育问题,这是一个需要解决的重大挑战。在本研究中,我们实施了一种基因组设计策略,通过创建能够克服杂种不育的广亲和品种来培育可育的亚种间杂交种。基于对两个籼粳杂交组合的联合遗传分析,我们确定四个杂种不育位点S5、f5、pf12和Sc是控制亚种间杂种不育的主要数量性状位点,因此是培育亚种间杂交水稻可操作的最小目标。然后,我们通过图位克隆技术克隆了pf12位点,它是杂种雄性不育最有效的位点之一,并表明在此位点对pf12A基因进行人工破坏能够成功恢复杂种育性。我们进一步利用广亲和品种Dular与代表性籼稻和粳稻品种的三个成对杂交组合剖析了广亲和性的遗传基础。在此基础上,我们构建并组装了四个位点S5、Sc、pf12和f5自然兼容等位基因的不同组合,发现改良系在测交F1中能够完全恢复花粉和胚囊育性,从而完全满足农业生产中亚种间杂交小穗育性的要求。这种育种方案将有助于重新设计未来具有更高产量潜力的亚种间杂交水稻。

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