Browse AMR Genes
Explore antimicrobial resistance genes from the literature
Explore antimicrobial resistance genes from the literature
ATP-binding cassette (ABC) antibiotic efflux pump
Overview
Active antibiotic resistome in soils unraveled by single-cell isotope probing and targeted metagenomics.
The study identifies various AMR genes and mutations in soil samples, highlighting the active resistome in agricultural and natural soils. Key findings include the detection of genes like gyrA, bcrA, and macB, which confer resistance to antibiotics such as ciprofloxacin and meropenem. The research emphasizes the importance of phenotypic resistance assessment in environmental AMR monitoring.
Functional analysis of bacterial genes accidentally packaged in rhizospheric phageome of the wild plant species Abutilon fruticosum.
The study identified several antibiotic resistance genes (ARGs) accidentally packaged in the phageome of Abutilon fruticosum, including soxR, parY mutant, arr-1, iri, AAC(3)-Ic, and oleC, which confer resistance to various antibiotics such as tetracycline, rifampin, and gentamicin.
Complete genome sequencing and comparative genomic analysis of three donkey Streptococcus equi subsp. equi isolates.
The study identified multiple antibiotic resistance genes in three donkey-derived Streptococcus equi subsp. equi isolates, including genes conferring resistance to beta-lactams, tetracyclines, macrolides, fluoroquinolones, and others. Notably, the HT1112 isolate showed resistance to six antimicrobials, while HTP133 and HTP232 showed resistance to fewer drugs. Additionally, the study highlighted the role of biofilm formation in antimicrobial resistance.
Bacterial diversity and resistome analysis of drinking water stored in cisterns from two First Nations communities in Manitoba, Canada.
The study identified a diverse array of antimicrobial resistance genes in drinking water stored in cisterns from two First Nations communities in Manitoba, Canada. Key findings include the presence of genes such as aac(3')-Ia, aac(6')-Iia, aac(6')-Iic, aph(3')-Ia, acrD, smeB, smeR, FEZ-1, rm3, SPG-1, OXA-21, OXA-119, OXA-205, dfrA14, dfrB6, acrB, acrF, adeF, ceoB, emrA, mexE, mexF, mexI, oprN, oqxB, BRP(MBL), vanSO, axyY, CRP, efrB, macB, mexB, mexC, mexD, mexK, mexQ, mexW, mexY, mtrA, muxB, muxC, oleB, oleC, ompB, oprM, smeD, smeE, golS, mdsB, PER-2, TEM-126, msbA, arnA, bacA, bcrA, MCR-5, rosA, rosB, rpoB2, ugd, mexN, taeA, efpA, rphA, rphB, otr(A), otrC, tetA(48 ), ompH, and triC, which confer resistance to various antibiotics including aminoglycosides, beta-lactams, cephalosporins, carbapenems, fluoroquinolones, macrolides, monobactams, nitroimidazoles, peptides, phenicols, pleuromutilins, rifamycins, tetracyclines, and triclosan.
Genomic characteristics, virulence potential, antimicrobial resistance profiles, and phylogenetic insights into Nocardia cyriacigeorgica.
The study identified several antimicrobial resistance genes in Nocardia cyriacigeorgica, including VanSO and VanRO for vancomycin resistance, erm(O)-Irm, srmB, and ermH for macrolide resistance, bla1 and bcl for beta-lactam resistance, CTX-M and KPC for cephalosporin and carbapenem resistance, tetA(58) and tetB(58) for tetracycline resistance, folC and folP for sulfonamide resistance, rbpA and rpoB2 for rifamycin resistance, murA and AbaF for fosfomycin resistance, cmlR for chloramphenicol resistance, and VatF and VatE for streptogramin resistance.
Occurrence and Drivers of Antibiotic Resistance Genes Carried by Bacteriophages in Soils Following Different Fertilization Treatments.
The study identified 19 pARG subtypes in soils with different fertilization treatments, highlighting the impact of organic fertilizers on the diversity and abundance of antibiotic resistance genes carried by bacteriophages.
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