Yu Hai-Long, Fang Zhi-Yuan, Liu Yu-Mei, Yang Li-Mei, Zhuang Mu, Lv Hong-Hao, Li Zhan-Sheng, Han Feng-Qing, Liu Xiao-Ping, Zhang Yang-Yong
Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, No. 12 ZhongGuanCun South St., Beijing, 100081, People's Republic of China.
Theor Appl Genet. 2016 Aug;129(8):1625-37. doi: 10.1007/s00122-016-2728-9. Epub 2016 May 20.
A novel allele-specific Rfo marker was developed and proved to be effective for MAS of Rfo gene in B. oleracea background and six Ogu-CMS fertility-restored interspecific hybrids were created for the first time. Ogura cytoplasmic male sterility (Ogu-CMS) has been extensively used for Brassica oleracea hybrid production. However, because of maternal inheritance, all the hybrids produced by CMS lines are male sterile and cannot be self-pollinated, which prohibits germplasm maintenance and innovation. This problem can be overcome by using the Ogu-CMS restorer line, but restorer material is absent in B. oleracea crops. Here, Rfo, a fertility-restored gene of Ogu-CMS, was transferred from rapeseed restorer lines into a Chinese kale Ogu-CMS line using interspecific hybridization combined with embryo rescue. Nine interspecific, triploid plant progenies were identified at morphological and ploidy level, with phenotypes intermediate between those of rapeseed and Chinese kale. Because the Rfo marker (Hu et al., Mol Breeding 22:663-674, 2008) cannot distinguish the Rfo and its homologies under a B. oleracea background, a novel allele-specific Rfo marker was developed based on the BLAST analysis of highly homologous Rfo sequences in B. oleracea. Screening using the novel Rfo marker found that six interspecific hybrids carrying Rfo were also fertile, although fertility varied during different flowering periods. Furthermore, BC1 offsprings with the Rfo gene were selected with the allele-specific Rfo marker and showed restored fertility. These results indicated that the novel allele-specific marker could be used for the MAS of Rfo gene in B. oleracea, and this study lays the foundation for the development of Ogu-CMS restorer material in cabbage and its related other subspecies.
开发了一种新型等位基因特异性Rfo标记,并证明其在甘蓝背景下对Rfo基因的分子标记辅助选择(MAS)有效,首次创建了6个萝卜胞质雄性不育(Ogu-CMS)育性恢复种间杂种。Ogura细胞质雄性不育(Ogu-CMS)已广泛用于甘蓝杂种生产。然而,由于母性遗传,CMS系产生的所有杂种都是雄性不育的,不能进行自花授粉,这阻碍了种质资源的保存和创新。利用Ogu-CMS恢复系可以克服这个问题,但甘蓝作物中缺乏恢复材料。在此,通过种间杂交结合胚挽救,将Ogu-CMS的育性恢复基因Rfo从油菜恢复系转移到芥蓝Ogu-CMS系中。在形态和倍性水平上鉴定出9个种间三倍体植株后代,其表型介于油菜和芥蓝之间。由于Rfo标记(Hu等人,《分子育种》22:663 - 674,2008)在甘蓝背景下无法区分Rfo及其同源基因,基于甘蓝中高度同源Rfo序列的BLAST分析,开发了一种新型等位基因特异性Rfo标记。使用新型Rfo标记进行筛选发现,6个携带Rfo的种间杂种也是可育的,尽管在不同花期育性有所不同。此外,利用等位基因特异性Rfo标记筛选出携带Rfo基因的BC1后代,其育性得到恢复。这些结果表明,新型等位基因特异性标记可用于甘蓝中Rfo基因的MAS,本研究为甘蓝及其相关其他亚种中Ogu-CMS恢复材料的开发奠定了基础。