van der Fits L, Deakin E A, Hoge J H, Memelink J
Institute of Molecular Plant Sciences, Clusius Laboratory, Leiden University, The Netherlands.
Plant Mol Biol. 2000 Jul;43(4):495-502. doi: 10.1023/a:1006440221718.
This paper describes a so-called ternary transformation system for plant cells. We demonstrate that Agrobacterium tumefaciens strain LBA4404 supplemented with a constitutive virG mutant gene (virGN54D) on a compatible plasmid is capable of very efficient T-DNA transfer to a diverse range of plant species. For the plant species Catharanthus roseus it is shown that increased T-DNA transfer results in increased stable transformation frequencies. Analysis of stably transformed C. roseus cell lines showed that, although the T-DNA transfer frequency is greatly enhanced by addition of virGN54D, only one or a few T-DNA copies are stably integrated into the plant genome. Thus, high transformation frequencies of different plant species can be achieved by introduction of a ternary plasmid carrying a constitutive virG mutant into existing A. tumefaciens strains in combination with standard binary vectors.
本文描述了一种所谓的植物细胞三元转化系统。我们证明,在兼容质粒上携带组成型virG突变基因(virGN54D)的根癌农杆菌菌株LBA4404能够非常高效地将T-DNA转移到多种植物物种中。对于长春花属植物,研究表明T-DNA转移增加会导致稳定转化频率提高。对稳定转化的长春花细胞系的分析表明,尽管添加virGN54D可大大提高T-DNA转移频率,但只有一个或少数几个T-DNA拷贝稳定整合到植物基因组中。因此,通过将携带组成型virG突变体的三元质粒引入现有的根癌农杆菌菌株并结合标准二元载体,可以实现不同植物物种的高转化频率。