Transformation of E. coli modified gdha gene into Nicotiana tabacum

P. Hằng, N. T. Linh, Lê Bắc Việt, N. T. Lien, L. T. Hien, H. Hue
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Abstract

The bacterial gdhA gene encodes NADH-GDH enzyme. The gdhA-transgenic tobacco plants exhibited high growth performance and enhanced herbicide resistance as well as drought tolerance. In addition, the gdhA gene when expressed in maize plants could increase productivity because of improving stress tolerance. In this study, we isolated and analyzed a gdhA gene from the E. coli strain JM109. Then, the E.coli derived-gdhA sequence was modified by using OptimumGene™ software for plant compatibility. The optimized gdhA gene was inserted into an expression cassette containing the CaMV 35S promoter and the 35S terminator of the pRTRA7/3 vector. The 35S::gdhA::35S construct was ligated into the plant expression plasmid pCAMBIA1300 which then introduced into the A. tumefaciens strain EHA105. In order to examine the expression of the gdhA gene, we created gdhA-transgenic plants via Agrobacterium-mediated transformation into N. tabacum K326. The PCR analysis showed that two out of 20 plants were positive to the presence of the gdhA gene. The RT-PCR experiment also revealed that gdhA was expressed in transcriptional level. These results suggested that the gdhA expression construction can be transformed into other crops such as maize. 
大肠杆菌修饰gdha基因在烟草中的转化
细菌的gdhA基因编码NADH-GDH酶。转基因烟草表现出较高的生长性能,抗除草剂和抗旱性增强。此外,在玉米植株中表达gdhA基因可以通过提高抗逆性来提高产量。在这项研究中,我们从大肠杆菌菌株JM109中分离并分析了一个gdhA基因。然后,利用OptimumGene™软件对大肠杆菌衍生的gdha序列进行植物相容性修饰。将优化后的gdhA基因插入含有CaMV 35S启动子和pRTRA7/3载体35S终止子的表达盒中。将35S::gdhA::35S构建物连接到植物表达质粒pCAMBIA1300中,然后将其引入到A. tummefaciens菌株EHA105中。为了检测gdhA基因的表达,我们通过农杆菌介导转化烟草nn . tabacum K326建立了gdhA转基因植株。PCR分析结果显示,20株植物中有2株gdhA基因呈阳性。RT-PCR实验也显示gdhA在转录水平表达。这些结果表明,gdhA表达结构可以转化到玉米等其他作物中。
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