scholarly article | Q13442814 |
P819 | ADS bibcode | 2012PLoSO...742724B |
P356 | DOI | 10.1371/JOURNAL.PONE.0042724 |
P932 | PMC publication ID | 3414459 |
P698 | PubMed publication ID | 22905164 |
P5875 | ResearchGate publication ID | 230699903 |
P2093 | author name string | Alexandra Tomova | |
Felipe C Cabello | |||
Henry P Godfrey | |||
Fred Moy | |||
Alejandra López | |||
Alejandro H Buschmann | |||
Larisa Ivanova | |||
Miguel A Maldonado | |||
Luis A Henríquez | |||
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Occurrence of antimicrobial resistance in fish-pathogenic and environmental bacteria associated with four danish rainbow trout farms | Q33988077 | ||
Transferable, multiple antibiotic and mercury resistance in Atlantic Canadian isolates of Aeromonas salmonicida subsp. salmonicida is associated with carriage of an IncA/C plasmid similar to the Salmonella enterica plasmid pSN254 | Q33988570 | ||
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History of the use of antibiotic as growth promoters in European poultry feeds | Q34705174 | ||
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qnr prevalence in ceftazidime-resistant Enterobacteriaceae isolates from the United States | Q34973794 | ||
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qnrD, a novel gene conferring transferable quinolone resistance in Salmonella enterica serovar Kentucky and Bovismorbificans strains of human origin | Q37072053 | ||
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New plasmid-mediated quinolone resistance gene, qnrC, found in a clinical isolate of Proteus mirabilis | Q37190834 | ||
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oqxAB encoding a multidrug efflux pump in human clinical isolates of Enterobacteriaceae | Q37274700 | ||
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Antibiotic resistance genes from the environment: a perspective through newly identified antibiotic resistance mechanisms in the clinical setting | Q37394211 | ||
Relationship between phenotypic and genotypic florfenicol resistance in Escherichia coli | Q37568958 | ||
Antibiotic resistant bacteria in fish from the Concepción Bay, Chile | Q39588918 | ||
Integron-containing IncU R plasmids pRAS1 and pAr-32 from the fish pathogen Aeromonas salmonicida | Q39743320 | ||
Vibrio cholerae O139 multiple-drug resistance mediated by Yersinia pestis pIP1202-like conjugative plasmids | Q41442347 | ||
Molecular characterization of class 3 integrons from Delftia spp. | Q41828461 | ||
Vibrio splendidus as the source of plasmid-mediated QnrS-like quinolone resistance determinants | Q42618006 | ||
CORE: a phylogenetically-curated 16S rDNA database of the core oral microbiome | Q42721072 | ||
Vibrio parahaemolyticus chromosomal qnr homologue VPA0095: demonstration by transformation with a mutated gene of its potential to reduce quinolone susceptibility in Escherichia coli | Q42727492 | ||
Class 1 integrons in benthic bacterial communities: abundance, association with Tn402-like transposition modules and evidence for coselection with heavy-metal resistance. | Q43168574 | ||
Unexpected occurrence of plasmid-mediated quinolone resistance determinants in environmental Aeromonas spp. | Q43230457 | ||
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Human health consequences of use of antimicrobial agents in aquaculture | Q56771949 | ||
[Residues of tetracycline and quinolones in wild fish living around a salmon aquaculture center in Chile] | Q79977306 | ||
GROWTH-promoting effect of aureomycin on pigs | Q80668753 | ||
Sulfaquinoxaline in the Control of Eimeria tenella and Eimeria necatrix in Chickens on a Commercial Broiler Farm | Q81058383 | ||
Plasmid-mediated quinolone resistance determinants among enterobacterial isolates from outpatients in Brazil | Q81452005 | ||
Use of sulfasuxidine, streptothricin, and streptomycin in nutritional studies with the chick | Q83299172 | ||
[Injudicious and excessive use of antibiotics: public health and salmon aquaculture in Chile] | Q83988187 | ||
Extraction of high molecular weight DNA from microbial mats | Q85054399 | ||
P275 | copyright license | Creative Commons Attribution 4.0 International | Q20007257 |
P6216 | copyright status | copyrighted | Q50423863 |
P433 | issue | 8 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | antimicrobial resistance | Q63391344 |
P304 | page(s) | e42724 | |
P577 | publication date | 2012-08-08 | |
P1433 | published in | PLOS One | Q564954 |
P1476 | title | Salmon aquaculture and antimicrobial resistance in the marine environment | |
P478 | volume | 7 |
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Q42562877 | Mechanisms of antimicrobial resistance in finfish aquaculture environments. |
Q39383411 | Microbial Diseases of Bivalve Mollusks: Infections, Immunology and Antimicrobial Defense |
Q30234427 | New Insights into Pathogenic Vibrios Affecting Bivalves in Hatcheries: Present and Future Prospects. |
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Q64118899 | Occurrence of Transferable Integrons and and Genes Among Sulfonamide-and/or Trimethoprim-Resistant Bacteria Isolated From Chilean Salmonid Farms |
Q46471416 | Persistence of Antibiotic Resistant Vibrio spp. in Shellfish Hatchery Environment. |
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Q42218073 | Plasmid-related quinolone resistance determinants in epidemic Vibrio parahaemolyticus, uropathogenic Escherichia coli, and marine bacteria from an aquaculture area in Chile |
Q38964114 | Review of emerging contaminants in aquatic biota from Latin America: 2002-2016. |
Q35126678 | Sulphonamide and trimethoprim resistance genes persist in sediments at Baltic Sea aquaculture farms but are not detected in the surrounding environment |
Q37562310 | The Resistome of Farmed Fish Feces Contributes to the Enrichment of Antibiotic Resistance Genes in Sediments below Baltic Sea Fish Farms |
Q33833331 | The Rising Tide of Antimicrobial Resistance in Aquaculture: Sources, Sinks and Solutions |
Q27323994 | The ocean as a global reservoir of antibiotic resistance genes |
Q35970100 | The use of phage FCL-2 as an alternative to chemotherapy against columnaris disease in aquaculture |
Q57934572 | Unpacking factors influencing antimicrobial use in global aquaculture and their implication for management: a review from a systems perspective |
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