https://www.ahs.ac.cn/images/0513-353X/images/top-banner1.jpg|#|苹果
https://www.ahs.ac.cn/images/0513-353X/images/top-banner2.jpg|#|甘蓝
https://www.ahs.ac.cn/images/0513-353X/images/top-banner3.jpg|#|菊花
https://www.ahs.ac.cn/images/0513-353X/images/top-banner4.jpg|#|灵芝
https://www.ahs.ac.cn/images/0513-353X/images/top-banner5.jpg|#|桃
https://www.ahs.ac.cn/images/0513-353X/images/top-banner6.jpg|#|黄瓜
https://www.ahs.ac.cn/images/0513-353X/images/top-banner7.jpg|#|蝴蝶兰
https://www.ahs.ac.cn/images/0513-353X/images/top-banner8.jpg|#|樱桃
https://www.ahs.ac.cn/images/0513-353X/images/top-banner9.jpg|#|观赏荷花
https://www.ahs.ac.cn/images/0513-353X/images/top-banner10.jpg|#|菊花
https://www.ahs.ac.cn/images/0513-353X/images/top-banner11.jpg|#|月季
https://www.ahs.ac.cn/images/0513-353X/images/top-banner12.jpg|#|菊花

园艺学报 ›› 2008, Vol. 35 ›› Issue (5): 727-734.

• 观赏植物 • 上一篇    下一篇

利用双T-DNA载体系统获得无选择标记转基因菊花的研究

孙 磊*;张启翔** ;周 琳*; 陆 苗;蔡 明   

  1. (北京林业大学园林学院 国家花卉工程技术研究中心,北京 100083)
  • 收稿日期:2007-11-03 修回日期:2008-04-07 出版日期:2008-05-25 发布日期:2008-05-25
  • 通讯作者: 张启翔

Generating Marker-free Transgenic Chrysanthemum by Agrobacterium Mediated Transformation with Twin T-DNA Binary Vectors

SUN Lei*, ZHANG Qi-xiang**,ZHOU Lin*, LU Miao, and CAI Ming   

  1. (National Flower Engineering Technology Research Center, College of Landscape Architecture,Beijing Forestry University, Beijing 100083, China)
  • Received:2007-11-03 Revised:2008-04-07 Online:2008-05-25 Published:2008-05-25
  • Contact: ZHANG Qi-xiang

摘要:

为获得具有无选择标记的转基因菊花,构建了一个双T-DNA超级双元载体pCAMBIA1301-gus,其中一个T-DNA结构域中含有选择标记基因hpt,另一个T-DNA结构域中含有目的基因gus,而且两个T-DNA结构顺序相连,中间没有其他插入序列。利用农杆菌介导转化菊花幼嫩茎尖薄层细胞,共获得506个抗性植株,通过PCR和Southern杂交检测表明共转化率为38.4%,对其中17个同时整合了hptgus基因的植株自交获得的T1代株系进行检测,发现约有15.8%的T1代植株中不含选择标记基因hpt,结果表明双T-DNA载体系统能有效地用于培育无选择标记转基因植物。

关键词: 菊花, 双T-DNA, 共转化, 无选择标记

Abstract:

In this study, we constructed a super binary vector to evaluate the potential of the twin T-DNA system for generating selectable marker-free progeny plants in chrysanthemum plants. The first T-DNA of the vector, contains the hygromycin phosphotransferase (hpt) selectable gene, while the second T-DNA, bears the β-glucuronidase gene (gus), featuring the gene of interest. The two T-DNA regions were located adjacent to each other with no intervening region. 506 resistant chrysanthemum plants were then obtained by Agrobacterium- mediated transformation with this vector, analysis of transgene inheritance was facilitated by PCR amplification and Southern blot from leaf tissue, the primary co-transformation frequency was 38.4%. A total of seventeen hpt-resistant/gus-active T0 plants were evaluated for segregation in the next generation, and among these, approximately 15.8% had transgene inserts which segregated in the T1 progeny to yield chrysanthemum plants without selectable marker gene. Overall, the twin T-DNA systems appeared to be a useful approach to generate marker free transgenic plants, thereby eliminating public concerns regarding proliferation of antibiotic and herbicide resistance genes in the environment.

Key words: chrysanthemum, transgenic, twin T-DNA, co-transformation, marker-free

中图分类号: