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Phenotypic variations in gentamicin-resistant isolates of Staphylococcus aureus.

Eight clinical isolates of Staphylococcus aureus showing high level resistance to seven aminoglycosides are described. The resistance did not appear to be due to enzyme inactivation. Possible mechanisms of this resistance are discussed. Resistant strains showed phenotypic variations in the form of different colonial morphology and biochemical activity.

Drug Resistance, Microbial↗

Isolation and characterization of mutants supersensitive to the spindle poison, isopropyl N-3-chlorophenyl carbamate (CIPC) in the fission yeast Schizosaccharomyces pombe.

Mutants supersensitive to the spindle poison, Isopropyl N-3-chlorophenyl carbamate (CIPC) of the fission yeast Schizosaccharomyces pombe were isolated and characterized genetically. Fourteen different recessive loci were assigned for the mutation (donated as cps1 to cps14) and two, cps1 and cps3, were mapped precisely on the chromosomes. Nine mutant strains were also supersensitive to phenothiazine derivatives, inhibitors of calcium-binding protein calmodulin. Four of nine strains were incapable of growing in the presence of 10 microM calcium ionophore A23187, at which the drug had no effect on cell growth in other strains. Fluorescence microscopy using the DAPI and Calcofluor staining methods showed two strains out of four to be defective in normal cell division; most stationary-phase cells of the cps6 mutant were seen to be bi- or tetra-nucleate, being partitioned with one or three septa, respectively. In the other mutant (cps8), enlarged cells were unequally partitioned with multisepta, and each compartment contained several daughter nuclei. The septa appeared aberrant in position within the cell, and situated diagonally but not vertically along the long cell axis.

Alleles↗

Do ruminal bacteria exchange genetic material?

This paper discusses the reasons and current evidence for gene transfer between ruminal bacteria and other bacteria in the environment, possible routes for genetic exchange, and candidate genes. Gene transfer between ruminal bacteria has been demonstrated in vitro; however, success has been only minimal in obtaining plasmids and other self-transmissible genetic material from ruminal bacteria. The application of molecular biology techniques with ruminal microorganisms should permit the opportunity for an in vivo assessment of gene transfer. Studies that could provide pertinent information for ruminal microbiologists and dairy nutritionists are outlined.

Animals↗

[The genetics and selection of microorganisms].

Results of investigations in genetics and selection of bacteria, streptomycetes and fungi obtained at the Department of Genetics of Microorganisms for the recent 35 years are presented in the review.

Bacteria↗