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白藜芦醇合酶基因的克隆及丹参的转化被引量:4
2007年
目的为探索利用分子生物学技术培育新型药用植物的新途径,将外源的白藜芦醇合酶(RS)基因导入到丹参中表达,以改善或增加丹参的效用。方法根据已公布的核苷酸序列,利用引物悬挂延伸法,经过3次扩增,最终从葡萄基因组DNA中获得完整的RScDNA基因序列;以质粒pBin438为基础,构建含有RS目的基因的组成型植物表达载体。在根癌农杆菌介导下,利用叶盘法转化丹参,进而通过PCR、PCR-Southern杂交对不同的转基因植株进行筛选与检测。结果总共得到了45棵卡那霉素抗性植株,经PCR和PCR-Southern杂交检测,确定葡萄RS基因已整合到部分转基因丹参苗的基因组中。结论成功建立了白藜芦醇合酶基因转化丹参的体系,并获得了转基因植株。
陈海敏徐妙云李刚强郝雯静魏昭荣艾铁民刘德虎
关键词:丹参根癌农杆菌白藜芦醇
Induction and expression of T4 lysozyme gene in Pichia pastoris被引量:3
2007年
Aim To induce and express the T4 lysozyme in Pichia pastoris and test the antibacterial activity of the protein. Methods T4 lysozyme gene was inserted into expression vector pPIC9K of Pichia pastoris with the fusion at N terminal. The recombinant plasmid was digested by Sal I and then introduced into prepared GS115 competent cells by electroporation. Positive clone and multiple inserts were screened. The secreted proteins in the supernatants were tested. In the agar holes diffusion assay, our expressed protein showed significant antibacterial circles. Results T4 lysozyme protein inhibited the growth of staphylococcus aureus and streptococcus Pneumoniae. There was no difference in the bactericidal activity and the amount of protein expression between the single and multiple copies. The antibacterial activity of expressed protein remained the same during the heat stability test. Conclusion T4 lysozyme was successfully induced and expressed in Pichia pastoris. There is no relationship between copy number and expression. T4 lysozyme protein is heat stable.
郝雯静李刚强徐妙云魏昭荣陈海敏刘德虎艾铁民
关键词:ELECTROPORATIONEXPRESSION
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