Browse AMR Genes
Explore antimicrobial resistance genes from the literature
Explore antimicrobial resistance genes from the literature
Rv1877 family multidrug efflux MFS transporter
Overview
| Allele | Database | Papers | Drug Classes | Organisms | Countries | Years | Sequence Accession | Protein Accession |
|---|---|---|---|---|---|---|---|---|
| mdt | Card DatabaseReference Gene CatalogReslit | 3 | QUINOLONE, cephalosporins +3 | Mycobacterium tuberculosis +3 | Zhejiang | 2024 | CPVZ01000010.1 | CNC42950.1 |
| mdt-fosB | Reslit | 2 | fosfomycin | Weissella ceti NC36 +7 | Brazil|United States|China|South Korea | 2015 | NZ_CP007588.1|NZ_CP009223.1|NZ_CP009224.1|NZ_ANCA00000000.1|NZ_AEKT00000000.1|NZ_CAGH00000000.1|NZ_ATUU00000000.1|BBIK00000000.1|NC_015759.1|NZ_AKGG00000000.1|NZ_BAWR00000000.1|NZ_ACKU00000000.1|HE575133|HE575134|HE575135|HE575136|HE575137|HE575138|HE575139|HE575140|HE575141|HE575142|HE575143|HE575144|HE575145|HE575146|HE575147|HE575148|HE575149|HE575150|HE575151|HE575152|HE575153|HE575154|HE575155|HE575156|HE575157|HE575158|HE575159|HE575160|HE575161|HE575162|HE575163|HE575164|HE575165|HE575166|HE575167|HE575168|HE575169|HE575170|HE575171|HE575172|HE575173|HE575174|HE575175|HE575176|HE575177|HE575178|HE575179|HE575180|HE575181|HE575182 | - |
The controversial nature of the Weissella genus: technological and functional aspects versus whole genome analysis-based pathogenic potential for their application in food and health.
The study identified several antibiotic resistance genes in Weissella species, including fosB, mdt-fosB, mrp, vanZ, sul, tet, and drrC, which confer resistance to fosfomycin, methicillin, teicoplanin, sulfonamide, tetracycline, and daunorubicin respectively.
The controversial nature of the Weissella genus: technological and functional aspects versus whole genome analysis-based pathogenic potential for their application in food and health.
The study identified several antibiotic resistance genes in Weissella species, including fosB, mdt-fosB, mrp, vanZ, sul, tet, and drrC, which confer resistance to fosfomycin, methicillin, teicoplanin, sulfonamide, tetracycline, and daunorubicin respectively.
Clinical and metagenomic predicted antimicrobial resistance in pediatric critically ill patients with infectious diseases in a single center of Zhejiang.
The study identified multiple antimicrobial resistance genes, including efflux pumps (Mex, ade, mdt, Mux, Opm) and beta-lactamase (OXA), in Gram-negative bacteria such as Klebsiella pneumoniae, Pseudomonas aeruginosa, and Acinetobacter baumannii. These genes conferred resistance to cephalosporins, beta-lactams/beta-Lactamase inhibitors, carbapenems, and sulfonamides.
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