[Multiple antibiotic resistance in actinomycetes]. 1977

V N Danilenko, and G G Puzynina, and N D Lomovskaia

Native strains of Actinomycetes from three systematic groups of Streptomyces (blue, gray and globisporine) have been characterized for their resistance to antibiotics and sulfamids. Most strains are found to possess stably inheritable multiple resistance to many antibiotics. The resistance of a number of strains to the aminoglycoside antibiotics and penicillins appears to be due to the presence of inactivating enzymes in these strains. The resistance to erythromycin, lyncomycin, tetracycline and ristomycin is likely to have an inducible nature in S. coelicolor A3(2). Linkage analysis for resistance determinants in pairs suggests random distribution of the majority of determinants among tested strains. Non-random distribution has been shown for determinants of resistance to tetracycline, chloramphenicol and ristomycin in Tc Cm, Tc Rm combinations.

UI MeSH Term Description Entries
D008040 Genetic Linkage The co-inheritance of two or more non-allelic GENES due to their being located more or less closely on the same CHROMOSOME. Genetic Linkage Analysis,Linkage, Genetic,Analyses, Genetic Linkage,Analysis, Genetic Linkage,Genetic Linkage Analyses,Linkage Analyses, Genetic,Linkage Analysis, Genetic
D008826 Microbial Sensitivity Tests Any tests that demonstrate the relative efficacy of different chemotherapeutic agents against specific microorganisms (i.e., bacteria, fungi, viruses). Bacterial Sensitivity Tests,Drug Sensitivity Assay, Microbial,Minimum Inhibitory Concentration,Antibacterial Susceptibility Breakpoint Determination,Antibiogram,Antimicrobial Susceptibility Breakpoint Determination,Bacterial Sensitivity Test,Breakpoint Determination, Antibacterial Susceptibility,Breakpoint Determination, Antimicrobial Susceptibility,Fungal Drug Sensitivity Tests,Fungus Drug Sensitivity Tests,Sensitivity Test, Bacterial,Sensitivity Tests, Bacterial,Test, Bacterial Sensitivity,Tests, Bacterial Sensitivity,Viral Drug Sensitivity Tests,Virus Drug Sensitivity Tests,Antibiograms,Concentration, Minimum Inhibitory,Concentrations, Minimum Inhibitory,Inhibitory Concentration, Minimum,Inhibitory Concentrations, Minimum,Microbial Sensitivity Test,Minimum Inhibitory Concentrations,Sensitivity Test, Microbial,Sensitivity Tests, Microbial,Test, Microbial Sensitivity,Tests, Microbial Sensitivity
D011995 Recombination, Genetic Production of new arrangements of DNA by various mechanisms such as assortment and segregation, CROSSING OVER; GENE CONVERSION; GENETIC TRANSFORMATION; GENETIC CONJUGATION; GENETIC TRANSDUCTION; or mixed infection of viruses. Genetic Recombination,Recombination,Genetic Recombinations,Recombinations,Recombinations, Genetic
D004305 Dose-Response Relationship, Drug The relationship between the dose of an administered drug and the response of the organism to the drug. Dose Response Relationship, Drug,Dose-Response Relationships, Drug,Drug Dose-Response Relationship,Drug Dose-Response Relationships,Relationship, Drug Dose-Response,Relationships, Drug Dose-Response
D004352 Drug Resistance, Microbial The ability of microorganisms, especially bacteria, to resist or to become tolerant to chemotherapeutic agents, antimicrobial agents, or antibiotics. This resistance may be acquired through gene mutation or foreign DNA in transmissible plasmids (R FACTORS). Antibiotic Resistance,Antibiotic Resistance, Microbial,Antimicrobial Resistance, Drug,Antimicrobial Drug Resistance,Antimicrobial Drug Resistances,Antimicrobial Resistances, Drug,Drug Antimicrobial Resistance,Drug Antimicrobial Resistances,Drug Resistances, Microbial,Resistance, Antibiotic,Resistance, Drug Antimicrobial,Resistances, Drug Antimicrobial
D005838 Genotype The genetic constitution of the individual, comprising the ALLELES present at each GENETIC LOCUS. Genogroup,Genogroups,Genotypes
D000900 Anti-Bacterial Agents Substances that inhibit the growth or reproduction of BACTERIA. Anti-Bacterial Agent,Anti-Bacterial Compound,Anti-Mycobacterial Agent,Antibacterial Agent,Antibiotics,Antimycobacterial Agent,Bacteriocidal Agent,Bacteriocide,Anti-Bacterial Compounds,Anti-Mycobacterial Agents,Antibacterial Agents,Antibiotic,Antimycobacterial Agents,Bacteriocidal Agents,Bacteriocides,Agent, Anti-Bacterial,Agent, Anti-Mycobacterial,Agent, Antibacterial,Agent, Antimycobacterial,Agent, Bacteriocidal,Agents, Anti-Bacterial,Agents, Anti-Mycobacterial,Agents, Antibacterial,Agents, Antimycobacterial,Agents, Bacteriocidal,Anti Bacterial Agent,Anti Bacterial Agents,Anti Bacterial Compound,Anti Bacterial Compounds,Anti Mycobacterial Agent,Anti Mycobacterial Agents,Compound, Anti-Bacterial,Compounds, Anti-Bacterial
D013302 Streptomyces A genus of bacteria that form a nonfragmented aerial mycelium. Many species have been identified with some being pathogenic. This genus is responsible for producing a majority of the ANTI-BACTERIAL AGENTS of practical value.

Related Publications

V N Danilenko, and G G Puzynina, and N D Lomovskaia
May 1988, The Japanese journal of antibiotics,
V N Danilenko, and G G Puzynina, and N D Lomovskaia
January 1982, Antibiotiki,
V N Danilenko, and G G Puzynina, and N D Lomovskaia
December 1983, The Journal of antibiotics,
V N Danilenko, and G G Puzynina, and N D Lomovskaia
March 1980, Antibiotiki,
V N Danilenko, and G G Puzynina, and N D Lomovskaia
December 2021, Journal of industrial microbiology & biotechnology,
V N Danilenko, and G G Puzynina, and N D Lomovskaia
December 1983, The Journal of antibiotics,
V N Danilenko, and G G Puzynina, and N D Lomovskaia
January 2010, Antibiotiki i khimioterapiia = Antibiotics and chemoterapy [sic],
V N Danilenko, and G G Puzynina, and N D Lomovskaia
January 1965, Federation proceedings. Translation supplement; selected translations from medical-related science,
V N Danilenko, and G G Puzynina, and N D Lomovskaia
January 2020, Frontiers in microbiology,
V N Danilenko, and G G Puzynina, and N D Lomovskaia
April 2018, Antibiotics (Basel, Switzerland),
Copied contents to your clipboard!