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1.
Biull Eksp Biol Med ; 109(3): 299-301, 1990 Mar.
Article in Russian | MEDLINE | ID: mdl-2114185

ABSTRACT

The transcipients were obtained in intrageneric matings of E.coli donor harbouring the plasmid PR4::Mu cts 62 with Bac. cereus GP7 recipient cells with the frequency 10(-9). The transcipient clone Bac. cereus 682 was selected having stably inherited and expressed the hybrid plasmid PR4::Mu cts 62 genes for antibiotic resistance and temperature sensitivity. Production of the bacteriophage Mu cts 62 particles was not registered in the bacillary transcipient cells. The plasmid RP4::Mu cts 62 genes were localized in the chromosome of Bac. cereus 682 transcipient by the blot-hybridization technique with 32P-labelled DNA of the bacteriophage Mu cts 62 and the plasmid PR4. The transcipient of Bac. cereus 682 has the donor properties and transfers the RP4::Mu cts 62 genes to recipient cells of Bac. cereus DSM 318 with the frequency of 10(-6)-10(-7). The expression and transfer of the gram-negative plasmid genes in gram-positive bacterial cells are discussed.


Subject(s)
Bacillus cereus/genetics , Gene Expression Regulation, Bacterial/genetics , Genes, Bacterial/genetics , Plasmids/genetics , Transformation, Bacterial , Escherichia coli/genetics , Genetic Markers , Phenotype , Species Specificity
2.
Article in Russian | MEDLINE | ID: mdl-2499144

ABSTRACT

The influence of plasmid RP4 Mucts62, heterologous for B. cereus, on the growth rate of B. cereus strains GA 682 and 319 obtained in our earlier experiments and on changes in the ultrastructure of their cell walls in comparison with B. cereus initial strains GP 7 and DSM 318 has been studied. Plasmid RP4 Mucts62 with a wide spectrum of action has been found not only to determine the functional signs of resistance to antibiotics and thermal sensitivity in the heterologous host, but also to take part in the morphological organization of the cell surface structure, and in particular in the structure of the S-layer. B. cereus strains containing plasmid RP4 Mucts62 are characterized by slower growth rate and cell fragility.


Subject(s)
Bacillus cereus/ultrastructure , Cell Wall/ultrastructure , Plasmids , Bacillus cereus/genetics , Bacillus cereus/growth & development
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