Genetic transformation of Vibrio parahaemolyticus, Vibrio alginolyticus, and Vibrio cholerae non O-1 with plasmid DNA by electroporation. 1990

H Hamashima, and T Nakano, and S Tamura, and T Arai
Department of Microbiology, Showa College of Pharmaceutical Sciences, Tokyo.

An electroporation procedure for the plasmid-mediated transformation of the genus Vibrio was performed, as part of an effort to develop recombinant DNA techniques for genetic manipulation of the genus Vibrio. Vibrio parahaemolyticus, V. alginolyticus, and V. cholerae non O-1 (9 different strains) were transformed with 3 vector plasmids (pACYC184, pHSG398, and pBR325). The efficiency of transformation was highly dependent on three parameters: the concentration of plasmid DNA; the strength of the electric field; and the combination of plasmid DNA and recipient strain. The drug-resistance genes on the vector plasmid were expressed in the Vibrio strains.

UI MeSH Term Description Entries
D010957 Plasmids Extrachromosomal, usually CIRCULAR DNA molecules that are self-replicating and transferable from one organism to another. They are found in a variety of bacterial, archaeal, fungal, algal, and plant species. They are used in GENETIC ENGINEERING as CLONING VECTORS. Episomes,Episome,Plasmid
D004269 DNA, Bacterial Deoxyribonucleic acid that makes up the genetic material of bacteria. Bacterial DNA
D004274 DNA, Recombinant Biologically active DNA which has been formed by the in vitro joining of segments of DNA from different sources. It includes the recombination joint or edge of a heteroduplex region where two recombining DNA molecules are connected. Genes, Spliced,Recombinant DNA,Spliced Gene,Recombinant DNA Research,Recombination Joint,DNA Research, Recombinant,Gene, Spliced,Joint, Recombination,Research, Recombinant DNA,Spliced Genes
D004563 Electrochemistry The study of chemical changes resulting from electrical action and electrical activity resulting from chemical changes. Electrochemistries
D005822 Genetic Vectors DNA molecules capable of autonomous replication within a host cell and into which other DNA sequences can be inserted and thus amplified. Many are derived from PLASMIDS; BACTERIOPHAGES; or VIRUSES. They are used for transporting foreign genes into recipient cells. Genetic vectors possess a functional replicator site and contain GENETIC MARKERS to facilitate their selective recognition. Cloning Vectors,Shuttle Vectors,Vectors, Genetic,Cloning Vector,Genetic Vector,Shuttle Vector,Vector, Cloning,Vector, Genetic,Vector, Shuttle,Vectors, Cloning,Vectors, Shuttle
D014169 Transformation, Bacterial The heritable modification of the properties of a competent bacterium by naked DNA from another source. The uptake of naked DNA is a naturally occuring phenomenon in some bacteria. It is often used as a GENE TRANSFER TECHNIQUE. Bacterial Transformation
D014733 Vibrio A genus of VIBRIONACEAE, made up of short, slightly curved, motile, gram-negative rods. Various species produce cholera and other gastrointestinal disorders as well as abortion in sheep and cattle. Beneckea
D014734 Vibrio cholerae The etiologic agent of CHOLERA. Bacillus cholerae,Bacillus cholerae-asiaticae,Liquidivibrio cholerae,Microspira comma,Pacinia cholerae-asiaticae,Spirillum cholerae,Spirillum cholerae-asiaticae,Vibrio albensis,Vibrio cholera,Vibrio cholerae-asiaticae,Vibrio comma
D014736 Vibrio parahaemolyticus A species of bacteria found in the marine environment, sea foods, and the feces of patients with acute enteritis. Beneckea parahaemolytica,Oceanomonas parahaemolytica,Pasteurella parahaemolytica

Related Publications

H Hamashima, and T Nakano, and S Tamura, and T Arai
August 1991, Gene,
H Hamashima, and T Nakano, and S Tamura, and T Arai
January 1989, Reviews of infectious diseases,
H Hamashima, and T Nakano, and S Tamura, and T Arai
January 2005, Journal of food protection,
H Hamashima, and T Nakano, and S Tamura, and T Arai
April 1988, Analytical biochemistry,
H Hamashima, and T Nakano, and S Tamura, and T Arai
December 2008, CSH protocols,
H Hamashima, and T Nakano, and S Tamura, and T Arai
March 2009, Letters in applied microbiology,
H Hamashima, and T Nakano, and S Tamura, and T Arai
November 1992, Plasmid,
H Hamashima, and T Nakano, and S Tamura, and T Arai
August 1990, Zhonghua liu xing bing xue za zhi = Zhonghua liuxingbingxue zazhi,
Copied contents to your clipboard!