Browse AMR Genes
Explore antimicrobial resistance genes from the literature
Explore antimicrobial resistance genes from the literature
ANT(6)
Overview
| Allele | Database | Papers | Drug Classes | Organisms | Countries | Years | Sequence Accession | Protein Accession |
|---|---|---|---|---|---|---|---|---|
| ANT(6) | Card Database | 1 | - | Bacillus subtilis subsp. subtilis str. 168 | - | - | AL009126.1 | CAB14620.1 |
| AadK | Card DatabaseReference Gene CatalogResFinder DatabaseReslit | 13 | streptomycin, STREPTOMYCIN +1 | Enterococcus faecalis +10 | France, Japan, North America|Asia|Europe|Australia|South America, South Korea, human gut|animal gut|environmental samples, Nigeria|Germany|Singapore|China, China | 1989, 2014, 2015, 2018, 2019, 2021, 2022, 2024, 2025 | M26879.1 | AAA22190.1 |
| aadK | ResFinder Database | 1 | STREPTOMYCIN | Bacillus subtilis | - | 1989 | M26879 | - |
Complete genome sequencing and comparative analysis of the linezolid-resistant Enterococcus faecalis strain DENG1
Nucleotide sequence of the chromosomal gene coding for the aminoglycoside 6-adenylyltransferase from Bacillus subtilis Marburg 168.
Nucleotide sequence of the chromosomal gene coding for the aminoglycoside 6-adenylyltransferase from Bacillus subtilis Marburg 168.
Nucleotide sequence of the chromosomal gene coding for the aminoglycoside 6-adenylyltransferase from Bacillus subtilis Marburg 168.
Nucleotide sequence of the chromosomal gene coding for the aminoglycoside 6-adenylyltransferase from Bacillus subtilis Marburg 168.
Whole-genome sequence of Chryseobacterium oranimense, a colistin-resistant bacterium isolated from a cystic fibrosis patient in France.
The study identified multiple AMR genes and mutations in Chryseobacterium oranimense G311, a colistin-resistant bacterium isolated from a cystic fibrosis patient. These include various beta-lactamases, aminoglycoside modifying enzymes, tetracycline resistance genes, MLS resistance genes, phenicol resistance genes, glycopeptide resistance genes, fluoroquinolone resistance genes, sulfonamide resistance genes, rifampin resistance genes, and multidrug efflux pumps. Additionally, mutations in pmrA, pmrB, and lpxA were found to contribute to colistin resistance.
Pilot Safety Evaluation of a Novel Strain of Bacteroides ovatus.
The study identified several antibiotic resistance genes in Bacteroides ovatus ELH-B2, including those conferring resistance to tetracycline, erythromycin, aminoglycosides, macrolides, and other antibiotics. These genes were validated through minimum inhibitory concentration (MIC) tests.
Genotypic diversity of Streptococcus suis and the S. suis -like bacterium Streptococcus ruminantium in ruminants.
The study identified several antibiotic resistance genes in Streptococcus ruminantium isolates, including genes conferring resistance to tetracycline, streptomycin, erythromycin, kanamycin, and chloramphenicol. These genes were located in genomic islands and showed similarities to integrative conjugative elements.
Genomic diversity and molecular epidemiology of Pasteurella multocida.
This study identified several antimicrobial resistance genes in Pasteurella multocida, including aminoglycoside, beta-lactam, tetracycline, macrolide, and sulfonamide resistance genes, highlighting the diverse resistance mechanisms present in this pathogen.
Molecular Characteristics of IS1216 Carrying Multidrug Resistance Gene Cluster in Serotype III/Sequence Type 19 Group B Streptococcus.
The study identified multidrug resistance gene clusters in non-srr1/2 serotype III Group B Streptococcus (GBS) isolates, including lnu(B), lsa(E), aadK, aadE, and aac(3)-IV, which confer resistance to lincosamides, streptomycin, and aminoglycosides.
Strain-level characterization of broad host range mobile genetic elements transferring antibiotic resistance from the human microbiome.
The study identifies 15 broad host range mobile genetic elements (MGEs) that can transfer antibiotic resistance genes between different bacterial phyla, including plasmids, integrative and conjugative elements (ICEs), and integrative and mobilizable elements (IMEs). Experimental validation shows that these MGEs can mobilize between commensals and pathogens, highlighting their potential role in antibiotic resistance dissemination.
Description of Staphylococcal Strains from Straw-Coloured Fruit Bat (Eidolon helvum) and Diamond Firetail (Stagonopleura guttata) and a Review of their Phylogenetic Relationships to Other Staphylococci.
The study describes the characterization of Staphylococcal strains from Straw-coloured fruit bats and a Diamond firetail, identifying them as belonging to the newly described species S. roterodami and S. singaporensis. The isolates exhibited unique genetic features and were found to be closely related to S. argenteus and S. schweitzeri.
Microbial adaptation to spaceflight is correlated with bacteriophage-encoded functions.
The study identifies prophage-encoded antibiotic resistance genes, including aadK in Paenibacillus polymyxa and mph(C) and msr(A) in Staphylococcus epidermidis, highlighting the role of bacteriophages in microbial adaptation to spaceflight.
Plasmid-Mediated Spread of Antibiotic Resistance by Arsenic and Microplastics During Vermicomposting.
Arsenic and microplastics significantly influenced the spread of antibiotic resistance genes (ARGs) during vermicomposting, with specific genes like bla ampC, bla LRA-1, bla FEZ-1, aph(3′)-II, ermB, vanY, mefA, catA, tetX4, bla IMP-11, aadK, ant(3′)-Ih-aac(6′)-Id, ermG, bla OXA-119, tetR, vatE, smeE, mexD, bla OXA-3, amrB, tetY, class A beta-lactamase, dfrA1, alanine adenosyltransferase JOHN-1, mdtB, mdtE, and erm-41 being enriched under various treatment conditions.
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