1982Journal of BacteriologyOpen access

Novel selection for tetracycline- or chloramphenicol-sensitive Escherichia coli

Brian L. Craine

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Abstract

A method for selecting tetracycline- or chloramphenicol-sensitive Escherichia coli cells from a population of predominantly resistant cells is described. This method depends on the inability of drug-sensitive cells to induce lambda receptors in the presence of chloramphenicol or tetracycline, protein synthesis-inhibiting drugs. The addition of bacteriophage lambda vir to a mixture of drug-sensitive and drug-resistant cells, induced for lambda receptors in the presence of tetracycline or chloramphenicol, preferentially kills the drug-resistant cells (which are capable of inducing lambda receptors). The result is a culture enriched for the sensitive cells. Several common strains used for transformation were compared for their ability to be selected. E. coli 294 was found to be superior.

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A method for selecting tetracycline- or chloramphenicol-sensitive Escherichia coli cells from a population of predominantly resistant cells is described. This method depends on the inability of drug-sensitive cells to induce lambda receptors in the presence of chloramphenicol or tetracycline, protein synthesis-inhibiting drugs. The addition of bacteriophage lambda vir to a mixture of drug-sensitive and drug-resistant cells, induced for lambda receptors in the presence of tetracycline or chloramphenicol, preferentially kills the drug-resistant cells (which are capable of inducing lambda receptors). The result is a culture enriched for the sensitive cells. Several common strains used for transformation were compared for their ability to be selected. E. coli 294 was found to be superior.

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Available abstract

A method for selecting tetracycline- or chloramphenicol-sensitive Escherichia coli cells from a population of predominantly resistant cells is described. This method depends on the inability of drug-sensitive cells to induce lambda receptors in the presence of chloramphenicol or tetracycline, protein synthesis-inhibiting drugs. The addition of bacteriophage lambda vir to a mixture of drug-sensitive and drug-resistant cells, induced for lambda receptors in the presence of tetracycline or chloramphenicol, preferentially kills the drug-resistant cells (which are capable of inducing lambda receptors). The result is a culture enriched for the sensitive cells. Several common strains used for transformation were compared for their ability to be selected. E. coli 294 was found to be superior.

Key concepts: Chloramphenicol, Tetracycline, Biology, Escherichia coli, Microbiology, Bacteriophage, Transformation (genetics), Population

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