Browse AMR Genes
Explore antimicrobial resistance genes from the literature
Explore antimicrobial resistance genes from the literature
tetracycline efflux Na+/H+ antiporter family transporter Tet(35)
Overview
| Allele | Database | Papers | Drug Classes | Organisms | Countries | Years | Sequence Accession | Protein Accession |
|---|---|---|---|---|---|---|---|---|
| Tet(35) | Reference Gene Catalog | 1 | TETRACYCLINE | Vibrio parahaemolyticus RIMD 2210633 | - | - | BA000031.2 | BAC59397.1 |
| tet35 | Reslit | 4 | tetracycline, oxytetracycline +1 | Vibrio harveyi +15 | Chile, China, Portugal|Antarctic|South Shetland Islands|North Adriatic Sea|Bohai Sea|Adriatic Sea|Pacific Ocean|Baltic Sea | 2002, 2018, 2020, 2022 | AF353562 | - |
| tet(35) | Card DatabaseResFinder DatabaseReslit | 16 | TETRACYCLINE, DOXYCYCLINE +3 | Vibrio harveyi +16 | Europe, Guangxi, China, Chile, Norway, USA|United States|China|Sri Lanka|Germany|Greece, China, Brazil, China|Bangladesh|USA|England|India, Portugal|Antarctic|South Shetland Islands|North Adriatic Sea|Bohai Sea|Adriatic Sea|Pacific Ocean|Baltic Sea, Bangkok|eastern Thailand|Thailand, North America, Shenzhen|Dapeng | 2002, 2011, 2017, 2018, 2020, 2021, 2022, 2023, 2024, 2025 | AF353562 | AAK37619.1 |
Genetic determinants of tetracycline resistance in Vibrio harveyi.
Two tetracycline resistance determinants, tetA and tet35, were identified in Vibrio harveyi M3.4L. Both genes conferred resistance to tetracycline, oxytetracycline, and minocycline when cloned in E. coli.
Genetic determinants of tetracycline resistance in Vibrio harveyi.
Genetic determinants of tetracycline resistance in Vibrio harveyi.
Genetic determinants of tetracycline resistance in Vibrio harveyi.
Environmental macrolide-lincosamide-streptogramin and tetracycline resistant bacteria.
The paper discusses the characterization of environmental macrolide-lincosamide-streptogramin (MLS) and tetracycline resistance genes, highlighting the diversity and distribution of these genes in environmental bacteria. It identifies several MLS resistance genes such as erm(H), erm(I), erm(N), and others, as well as tetracycline resistance genes like tetA(P), tet(V), and tet(X).
pirAB(vp)-Bearing Vibrio parahaemolyticus and Vibrio campbellii Pathogens Isolated from the Same AHPND-Affected Pond Possess Highly Similar Pathogenic Plasmids.
The study identifies antibiotic resistance genes in Vibrio parahaemolyticus and Vibrio campbellii strains isolated from an AHPND-affected pond, highlighting the presence of tetracycline, sulfonamide, streptomycin, and florfenicol resistance mechanisms.
Current Status of the Use of Antibiotics and the Antimicrobial Resistance in the Chilean Salmon Farms.
The study identifies several AMR genes, including floR, tet(A), tet(B), tet(H), tet(l), tet(34), tet(35), aac(6')-Ib-cr, and intI1, associated with resistance to florfenicol, oxytetracycline, quinolones, and kanamycin in Chilean salmon farming environments.
Extended antibiotic treatment in salmon farms select multiresistant gut bacteria with a high prevalence of antibiotic resistance genes.
The study identifies several AMR genes, including floR, fexA, and various tetracycline resistance genes (tetA, tetB, tetE, tetH, tetL, tetM, tet34, tet35), associated with resistance to florfenicol and oxytetracycline in gut bacteria from salmon farms. These genes were found in multiple bacterial species, highlighting the widespread nature of AMR in aquatic environments.
Vibrios from the Norwegian marine environment: Characterization of associated antibiotic resistance and virulence genes.
The study identified various antibiotic resistance genes in Vibrio isolates from the Norwegian marine environment, including beta-lactamases (blaCARB, blaampC, varG), tetracycline resistance genes (tet34, tet35), a multidrug efflux pump (adeF), a quinolone resistance gene (qnr), and a chloramphenicol resistance gene (catB-related).
Identification of Antimicrobial Resistance Determinants in Aeromonas veronii Strain MS-17-88 Recovered From Channel Catfish (Ictalurus punctatus).
The study identified multiple antimicrobial resistance genes in Aeromonas veronii strain MS-17-88, including beta-lactamase genes (imiS, ampS), phenicol resistance genes (floR, catB2, catB7, vat(F)), colistin resistance genes (mcr-3, mcr-7.1), tetracycline resistance genes (tet(34), tet(35), tet(E)), and a trimethoprim resistance gene (dfrA3).
Complete genome analysis of a virulent Vibrio scophthalmi strain VSc190401 isolated from diseased marine fish half-smooth tongue sole, Cynoglossus semilaevis.
The study identified several AMR genes in Vibrio scophthalmi strain VSc190401, including those conferring resistance to aminoglycosides, fluoroquinolones, tetracyclines, and polymyxins. Some of these genes were validated experimentally.
Genome- and Proteome-Wide Analysis of Lysine Acetylation in Vibrio vulnificus Vv180806 Reveals Its Regulatory Roles in Virulence and Antibiotic Resistance.
The study identifies varG, tet(34), and tet(35) as antibiotic resistance genes in Vibrio vulnificus Vv180806, with varG showing beta-lactamase activity against penicillins, carbapenems, and cephalosporins, contributing to cefoxitin resistance.
Genomic analysis of Neisseria elongata isolate from a patient with infective endocarditis.
The study identified several resistance genes in Neisseria elongata isolates, primarily associated with antibiotic efflux pumps. The isolate Nel_M001 was found to possess multiple resistance genes, including cpxR, macAB, mtrCDE, smeR, and tet(35), which are linked to tetracycline resistance.
Proximity ligation strategy for the genomic reconstruction of microbial communities associated with the ectoparasite Caligus rogercresseyi.
The study identified four antibiotic resistance genes (ARGs) in the microbiota of the sea louse Caligus rogercresseyi, including tet(35), QnrS2, catB9, and OXA-209, which confer resistance to tetracycline, quinolone, chloramphenicol, and beta-lactam antibiotics, respectively.
Population genomics of the food-borne pathogen Vibrio fluvialis reveals lineage associated pathogenicity-related genetic elements.
The study identified 21 antimicrobial resistance genes in Vibrio fluvialis, with 19 of them predominantly present in VflPop2. The tetracycline resistance gene tet(35) was found in 95% of VflPop2 strains, highlighting its significance in the population. Additionally, the plasmid pBD146 was associated with resistance to trimethoprim-sulfamethoxazole, and the presence of dfr6 gene in pBD146 was linked to this resistance.
Molluscs-A ticking microbial bomb.
The paper discusses the presence of antibiotic resistance genes (ARGs) in bivalve molluscs, highlighting the spread of resistance to various antibiotics such as colistin, beta-lactams, fluoroquinolones, and tetracyclines. It emphasizes the role of bivalve aquacultures in the dissemination of ARGs and the potential risks to human health through the food chain.
Molluscs-A ticking microbial bomb.
The paper discusses the presence of antibiotic resistance genes (ARGs) in bivalve molluscs, highlighting the spread of resistance to various antibiotics such as colistin, beta-lactams, fluoroquinolones, and tetracyclines. It emphasizes the role of bivalve aquacultures in the dissemination of ARGs and the potential risks to human health through the food chain.
Incidence, genetic diversity, and antimicrobial resistance profiles of Vibrio parahaemolyticus in seafood in Bangkok and eastern Thailand.
The study identified several antimicrobial resistance genes in Vibrio parahaemolyticus isolates from seafood in Bangkok and eastern Thailand, including blaCARB, tet(34), tet(35), qnrC, dfrA6, and blaCTX-M-55, which confer resistance to various antibiotics such as ampicillin, amoxicillin, piperacillin, tetracycline, doxycycline, ciprofloxacin, and trimethoprim.
Impact of doxycycline post-exposure prophylaxis for sexually transmitted infections on the gut microbiome and antimicrobial resistome.
The study found that doxy-PEP use over 6 months significantly increased the proportion and expression of tetracycline resistance genes in the gut microbiome, with no significant changes in other antibiotic resistance gene classes.
Antimicrobial resistance, virulence factors and phylogenetic profiles of Vibrio parahaemolyticus in the eastern coast of Shenzhen.
The study identified several antimicrobial resistance genes in Vibrio parahaemolyticus isolates from Shenzhen, including blaCARB, tet(34), tet(35), qnrVC6, sul2, aph(6)-Id, floR, cat, and blaCTX-M-14. These genes conferred resistance to various antibiotics such as ampicillin, tetracycline, fluoroquinolones, sulfonamides, aminoglycosides, chloramphenicol, and beta-lactams.
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