Browse AMR Genes
Explore antimicrobial resistance genes from the literature
Explore antimicrobial resistance genes from the literature
Rv1877 family multidrug efflux MFS transporter
Overview
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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