Bond J E, Roose M L
Department of Botany and Plant Sciences, University of California, Riverside, CA 92521-0124, USA e-mail:
Plant Cell Rep. 1998 Dec;18(3-4):229-234. doi: 10.1007/s002990050562.
Transgenic Washington navel orange [Citrus sinensis (L.) Osbeck] plants were obtained using Agrobacterium-mediated transformation of seedling epicotyl tissue. An average of 45% (58 out of 128 segments) of the epicotyl segments produced shoots expressing the β-glucuronidase (GUS)-intron reporter gene when using Agrobacterium strain C58 C1, compared to 29% (38 out of 128 segments) for EHA101-5 and 0% for LBA4404. Co-culture of 21-day-old Washington navel epicotyl stem segments gave greater transformation efficiency than co-culture of 35- or 56-day-old stem segments. After 6 weeks, regenerated shoots were micro-grafted in vivo onto seedling rootstocks of Carrizo citrange. Stable integration of the transgene sequence was confirmed by expression of the plant intron-containing GUS gene, PCR and Southern hybridization. The apomictic (non-zygotic) state of the transgenic plants was confirmed by isoenzyme and random amplified polymorphic DNA analyses. More than 50 transgenic plants have been obtained and are growing in the greenhouse.
通过农杆菌介导的幼苗上胚轴组织转化获得了转基因华盛顿脐橙[Citrus sinensis (L.) Osbeck]植株。使用农杆菌菌株C58 C1时,平均45%(128个外植体中有58个)的上胚轴外植体产生了表达β-葡萄糖醛酸酶(GUS)-内含子报告基因的芽,相比之下,EHA101-5为29%(128个外植体中有38个),LBA4404为0%。21日龄华盛顿脐橙上胚轴茎段的共培养比35日龄或56日龄茎段的共培养具有更高的转化效率。6周后,将再生芽在体内微嫁接至卡里佐枳橙的幼苗砧木上。通过含植物内含子的GUS基因表达、PCR和Southern杂交证实了转基因序列的稳定整合。通过同工酶和随机扩增多态性DNA分析证实了转基因植株的无融合生殖(非合子)状态。已获得50多株转基因植株,正在温室中生长。