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of P. agglomerans on fruits or vegetables [ 4 , 8 ]. The epidemiology and resistance trends of bacterial pathogens vary greatly by the profile of the healthcare institution and geographical region; therefore, the assessment of local data is

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-lactamases in a major teaching hospital in Ghana: the need for regular monitoring and evaluation of antibiotic resistance . Am J Trop Med Hyg 89 , 960 – 964 ( 2013 ) 12. Feglo

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, Yamaoka Y : Search for novel candidate mutations for metronidazole resistance in Helicobacter pylori using next-generation sequencing . Antimicrob Agents Chemother 59 , 2343 – 2348 ( 2015 ) 7

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European Journal of Microbiology and Immunology
Authors: Paul-Satyaseela Maneesh, Murali Sowmiya, Thirunavukkarasu Bharani, Hajib Naraharirao Madhavan and Jambulingam Malathi

detection of this important resistance threat . Clin Microbiol Rev 14 , 933 – 951 ( 2001 ) 2. Coque TM , Baquero F , Cantòn R : Increasing

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Orvosi Hetilap
Authors: Éva Nemes-Nikodém, Alexandra Brunner, Béla Tóth, Veronika Tóth, András Bánvölgyi and Eszter Ostorházi

World Health Organization (WHO), Department of Reproductive Health and Research: Global action plan to control the spread and impact of antimicrobial resistance in Neisseria Gonorrhoeae. WHO, Geneva, 2012, 1

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Introduction Antimicrobial resistance (AMR) in Gram-negative bacteria is a major public health concern, severely limiting therapeutic options in clinical settings [ 1 ]. While the emergence of plasmid-mediated resistance to extended

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], resistance against bactericidal first-line drugs like beta-lactam antibiotics, caused by enzymes like, e.g., extended spectrum beta-lactamases (ESBL) or carbapenems for E. coli , as well as by penicillin-binding proteins for methicillin-resistant S. aureus

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Introduction Extended spectrum β-lactamases (ESBLs) are enzymes produced by a variety of Gram-negative bacteria which confer an increased resistance to commonly used antibiotics, such as the penicillins and the cephalosporins

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of stem rust resistance in wheat using genotyping by sequencing . PloS One 11 :e 0155760 . Bansal , U. , Bariana , H. , Wong , D. , Randhawa , M. , Wicker , T. , Hayden

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. Aust Vet J 78 , 549 – 559 ( 2000 ) 7. Johns IC , Adams EL : Trends in antimicrobial resistance in equine bacterial isolates: 1999–2012 . Vet

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