Browse AMR Genes
Explore antimicrobial resistance genes from the literature
Explore antimicrobial resistance genes from the literature
aminoglycoside-6'-N-acetyltransferase
Overview
Identification and characterization of integron-mediated antibiotic resistance in the phytopathogen Xanthomonas oryzae pv. oryzae.
The study identifies and characterizes the aacA3, arr3, and aadA1 genes within class 1 integrons in Xanthomonas oryzae pv. oryzae, which confer resistance to various aminoglycosides and rifampicin.
Novel Mobilizable Genomic Island GEI-D18A Mediates Conjugational Transfer of Antibiotic Resistance Genes in the Multidrug-Resistant Strain Rheinheimera sp. D18.
The study characterizes a novel mobilizable genomic island, GEI-D18A, in the multidrug-resistant strain Rheinheimera sp. D18, which carries several antibiotic resistance genes including aadA1, aacA3, tet(B), catA, dfrA37, and three sul1 genes. The transferability of GEI-D18A was confirmed through mating experiments, demonstrating its role in the conjugational transfer of antibiotic resistance genes.
Emergence and Genetic Characterization of Plasmid-Encoded VIM-2-Producing Pseudomonas stutzeri with Novel Integron In1998 Isolated from Cerebrospinal Fluid.
The study identifies a novel plasmid-encoded VIM-2-producing Pseudomonas stutzeri strain, ZDHY95, with a complex genetic arrangement including a novel class I integron In1998 and various resistance genes such as blaVIM-2, aacA3, aadA13, cmlA8, blaOXA-246, arr3, dfrA27, qacEΔ1, sul1, aacA4'-30, aacA4', qnrVC1, catB11, blaCARB-4.
On the use of antibiotics to control plant pathogenic bacteria: a genetic and genomic perspective.
The study identifies several AMR genes and mutations associated with streptomycin, kasugamycin, gentamicin, and oxytetracycline resistance in plant pathogenic bacteria, highlighting the role of Tn 5393 and other mobile genetic elements in the dissemination of these resistance traits.
Phenotypic and genotypic characterization of antimicrobial resistance and virulence profiles of Salmonella enterica serotypes isolated from necropsied horses in Kentucky.
The study identified several AMR genes in Salmonella enterica isolates from necropsied horses, including beta-lactamase genes (blaTEM, blaCTX-M, blaSHV2, blaOXA-9), aminoglycoside resistance gene (aacA[3]), sulfonamide resistance gene (sul2), amphenicol resistance gene (floR), tetracycline resistance gene (tetB), streptomycin resistance gene (strA), macrolide resistance gene (ermB2), and quinolone resistance gene (qnrB2). These genes were associated with resistance to multiple antibiotics, highlighting the presence of multidrug-resistant Salmonella strains.
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