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[利用FLP/FRT重组系统培育无标记转基因烟草植株]

[Produce of marker-free transgenic tobacco plants by FLP/frt recombination system].

作者信息

Shan Xiao-Yi, Li Bei, Zhang Ju-Ren

机构信息

School of Life Science, Shandong University, Jinan, China.

出版信息

Sheng Wu Gong Cheng Xue Bao. 2006 Sep;22(5):744-50. doi: 10.1016/s1872-2075(06)60054-x.

Abstract

Selectable marker genes that usually encode antibiotic or herbicide resistances are widely used for the selection of the transgenic plants, but they become unnecessary and undesirable after transformation selection. An important strategy to improve the transgenic plants' biosafety is to eliminate the marker genes after successful selection. In the FLP/frt site-specific system of the 2 microm plasmid of Saccharomyces cerevisiae, the FLP enzyme efficiently catalyzes recombination between two directly repeated FLP recombination target (frt) sites, eliminating the sequence between them. By controlled expression of the FLP recombinase and specific allocation of the frt sites within transgenic constructs, the system can be applied to eliminate the marker genes after selection. Through a series of procedures, the plant FLP/frt site-specific recombination system was constructed, which included the frt containing vector pCAMBIA1300-betA-frt-als-frt and the FLP expression vector pCAMBIA1300-hsp-FLP-hpt. The FLP recombinase gene was introduced into transgenic (betA-frt-als-frt) tobacco plants by re-transformation. In re-transgenic plants, after heat shock treatment, the marker gene als flanked by two identical orientation frt sites could be excised by the inducible expression of FLP recombinase under the control of hsp promoter. Excision of the als gene was found in 41% re-transgenic tobacco plants, which indicated that this systerm could make a great contribution to obtain the marker free transgenic plants.

摘要

通常编码抗生素或除草剂抗性的选择标记基因被广泛用于转基因植物的筛选,但在转化筛选后它们就变得不必要且不受欢迎。提高转基因植物生物安全性的一个重要策略是在成功筛选后消除标记基因。在酿酒酵母2μm质粒的FLP/frt位点特异性系统中,FLP酶高效催化两个直接重复的FLP重组靶标(frt)位点之间的重组,消除它们之间的序列。通过FLP重组酶的可控表达以及frt位点在转基因构建体中的特定排布,该系统可用于在筛选后消除标记基因。通过一系列步骤,构建了植物FLP/frt位点特异性重组系统,其中包括含frt的载体pCAMBIA1300-betA-frt-als-frt和FLP表达载体pCAMBIA1300-hsp-FLP-hpt。通过再次转化将FLP重组酶基因导入转基因(betA-frt-als-frt)烟草植株。在再次转基因植株中,热激处理后,在hsp启动子控制下可诱导表达的FLP重组酶能够切除两侧带有两个同向frt位点的标记基因als。在41%的再次转基因烟草植株中发现了als基因的切除,这表明该系统可为获得无标记转基因植物做出巨大贡献。

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