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根癌农杆菌介导的风铃草转化:影响转基因芽转化和再生的因素

Agrobacterium tumefaciens-mediated transformation of Campanula carpatica: factors affecting transformation and regeneration of transgenic shoots.

作者信息

Sriskandarajah Sridevy, Frello Stefan, Jørgensen Kirsten, Serek Margrethe

机构信息

Department of Agricultural Sciences, Royal Veterinary and Agricultural University, 40 Thorvaldsensvej, 1871, Copenhagen, Frederiksberg C, Denmark.

出版信息

Plant Cell Rep. 2004 Aug;23(1-2):59-63. doi: 10.1007/s00299-004-0797-8. Epub 2004 Apr 28.

Abstract

An efficient transformation system for Campanula carpatica was developed using Agrobacterium tumefaciens strains LBA4404 (harbouring the plasmid pBI121), and AGL0 (harbouring the plasmid pBEO210). This is the first report on the transformation of C. carpatica. Various factors affecting the transformation efficiency and subsequent regeneration were identified. The age of seedlings from which the explants for transformation studies were taken, and the growth conditions under which the seedlings were grown had a significant influence on the production of transformed shoots. Hypocotyls taken from 12-day-old seedlings grown in the dark were the most productive, with up to 25% of hypocotyls producing transformed shoots. Explants taken from 5-week-old seedlings produced only transformed callus. The medium used for co-cultivation and incubation also had a significant influence on transformation frequency and shoot regeneration. The cultivar "Blue Uniform" was more responsive than "White Uniform". Both bacterial strains and plasmids were equally effective in producing transformed tissue. Transformed shoots were selected on kanamycin medium, and the presence of the uidA and nptII genes in those selected shoots was confirmed by beta-glucuronidase and ELISA analyses, respectively.

摘要

利用根癌农杆菌菌株LBA4404(携带质粒pBI121)和AGL0(携带质粒pBEO210)开发了一种有效的风铃草转化系统。这是关于风铃草转化的首次报道。确定了影响转化效率和后续再生的各种因素。用于转化研究的外植体所取自的幼苗年龄,以及幼苗生长的条件对转化芽的产生有显著影响。取自黑暗中生长12天的幼苗的下胚轴最易产生转化芽,高达25%的下胚轴能产生转化芽。取自5周龄幼苗的外植体仅产生转化愈伤组织。用于共培养和培养的培养基对转化频率和芽再生也有显著影响。“蓝色统一”品种比“白色统一”品种反应更灵敏。两种细菌菌株和质粒在产生转化组织方面同样有效。在卡那霉素培养基上筛选转化芽,并分别通过β-葡萄糖醛酸酶和ELISA分析证实所选芽中uidA和nptII基因的存在。

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