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Transformation of Rhodococcus fascians by High-Voltage Electroporation and Development of R. fascians Cloning Vectors

机译:高压电穿孔法转化法球红球菌和法西斯菌的克隆载体的开发

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摘要

The analysis of the virulence determinants of phytopathogenic Rhodococcus fascians has been hampered by the lack of a system for introducing exogenous DNA. We investigated the possibility of genetic transformation of R. fascians by high-voltage electroporation of intact bacterial cells in the presence of plasmid DNA. Electrotransformation in R. fascians D188 resulted in transformation frequencies ranging from 105/μg of DNA to 107/μg of DNA, depending on the DNA concentration. The effects of different electrical parameters and composition of electroporation medium on transformation efficiency are presented. By this transformation method, a cloning vector (pRF28) for R. fascians based on an indigenous 160-kilobase (chloramphenicol and cadmium resistance-encoding) plasmid pRF2 from strain NCPPB 1675 was developed. The origin of replication and the chloramphenicol resistance gene on pRF28 were used to construct cloning vectors that are capable of replication in R. fascians and Escherichia coli. The electroporation method presented was efficient enough to allow detection of the rare integration of replication-deficient pRF28 derivatives in the R. fascians D188 genome via either homologous or illegitimate recombination.
机译:由于缺乏引入外源DNA的系统,植物致病性红球菌法西斯菌的致病力决定因素的分析受到阻碍。我们调查了存在质粒DNA的情况下,通过完整细菌细胞的高压电穿孔进行法西斯菌的遗传转化的可能性。法西斯酵母D188中的电转化导致DNA的转化频率范围从10 5 /μg到10 7 /μgDNA,具体取决于DNA浓度。提出了电参数和电穿孔介质组成对转化效率的影响。通过这种转化方法,开发了基于来自菌株NCPPB 1675的原生160碱基(编码氯霉素和抗镉的质粒)pRF2的法西斯菌的克隆载体(pRF28)。复制起点和pRF28上的氯霉素抗性基因被用于构建能够在法西斯菌和大肠杆菌中复制的克隆载体。提出的电穿孔方法足够有效,可以通过同源或非法重组检测法西斯酵母D188基因组中复制缺陷型pRF28衍生物的罕见整合。

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