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电穿孔法改良创伤弧菌转化方法。

Improved Method for Transformation of Vibrio vulnificus by Electroporation.

机构信息

Burnett School of Biomedical Sciences, College of Medicine, University of Central Florida, Orlando, Florida.

Institute for Postharvest and Food Sciences, Volcani Research Center, Rishon LeZion, Israel.

出版信息

Curr Protoc Microbiol. 2020 Sep;58(1):e106. doi: 10.1002/cpmc.106.

Abstract

Vibrio vulnificus, an emergent human pathogen, causes fulminant septicemia with a mortality rate of over 50%. Unlike for other pathogenic Vibrio species, the factors to conclusively indicate the virulence potential of V. vulnificus strains remain largely unknown. Understanding the pathogenesis of this bacterium at a molecular level is severely hindered by inefficiencies in transformation, for instance, due to the presence of a periplasmic nuclease, Vvn. Currently, successful transformation of V. vulnificus is nearly impossible due to lack of mobilizable plasmids for the bacterium, requiring (i) very high DNA concentrations, (ii) plasmid linearization, (iii) development of novel V. vulnificus-derived plasmids, or (iv) time-consuming conjugation-based methods. To overcome these limitations, we describe a rapid, efficient, and reproducible electroporation protocol to effectively transform widely available plasmids, with different copy numbers and antibiotic resistances, into phylogenetically distant strains of V. vulnificus. Cells are made competent in high concentrations of sucrose devoid of cations and recovered from electroporation using a high-salinity recovery medium. Compared to existing methods for transformation of V. vulnificus, significantly higher efficiencies are obtained using this improved protocol. Rapid and effective transformations can markedly improve molecular analyses of V. vulnificus leading to a greater understanding of its virulence potential. This is crucial to develop rapid detection methods which have the potential to prevent future outbreaks. The electroporation protocol described here may be particularly useful for optimizing transformation of other nuclease-producing bacteria. © 2020 Wiley Periodicals LLC. Basic Protocol 1: Preparation of competent cells Basic Protocol 2: Transformation of cells by electroporation.

摘要

创伤弧菌,一种新兴的人类病原体,可导致暴发性败血性休克,死亡率超过 50%。与其他致病性弧菌种类不同,明确创伤弧菌菌株毒力潜力的因素在很大程度上尚不清楚。由于存在周质核酸酶 Vvn,因此在分子水平上理解该细菌的发病机制受到转化效率低下的严重阻碍。目前,由于缺乏可移动质粒,几乎不可能成功转化创伤弧菌,这需要 (i) 非常高的 DNA 浓度,(ii) 质粒线性化,(iii) 开发新型创伤弧菌衍生质粒,或 (iv) 耗时的基于共轭的方法。为了克服这些限制,我们描述了一种快速、高效且可重复的电穿孔方案,可有效地将具有不同拷贝数和抗生素抗性的广泛可用质粒转化为系统发育上不同的创伤弧菌菌株。在没有阳离子的高浓度蔗糖中使细胞感受态,然后使用高盐恢复培养基从电穿孔中回收细胞。与创伤弧菌转化的现有方法相比,使用这种改进的方案可获得更高的效率。快速有效的转化可以显著改善创伤弧菌的分子分析,从而更好地了解其毒力潜力。这对于开发具有预防未来爆发潜力的快速检测方法至关重要。本文描述的电穿孔方案可能特别有助于优化其他产生核酸酶的细菌的转化。© 2020 威立出版公司。基本方案 1:感受态细胞的制备基本方案 2:电穿孔转化细胞。

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