Antimicrobial resistance and virulence profile of enterococci isolated from poultry and cattle sources in Nigeria

被引:0
作者
Emmanuel Ochefije Ngbede
Mashood Abiola Raji
Clara Nna Kwanashie
Jacob Kwada Pajhi Kwaga
机构
[1] University of Agriculture Makurdi,Department of Veterinary Pathology & Microbiology
[2] Ahmadu Bello University Zaria,Department of Veterinary Microbiology
[3] University of Ilorin,Department of Veterinary Microbiology
[4] Ahmadu Bello University Zaria,Department of Veterinary Public Health & Preventive Medicine
来源
Tropical Animal Health and Production | 2017年 / 49卷
关键词
Antimicrobial resistance; Cattle; Poultry; Virulence traits;
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学科分类号
摘要
This study investigated the occurrence, antimicrobial resistance and virulence of Enterococcus from poultry and cattle farms. Three hundred and ninety samples: cloacal/rectal swabs (n = 260) and manure (n = 130] were processed for recovery of Enterococcus species. Standard bacteriological methods were used to isolate, identify and characterize Enterococcus species for antimicrobial susceptibility and expression of virulence traits. Detection of antibiotic resistance and virulence genes was carried out by polymerase chain reaction. Enterococcus was recovered from 167 (42.8%) of the 390 samples tested with a predominance of Enterococcusfaecium (27.7%). Other species detected were Enterococcus gallinarum, Enterococcus faecalis, Enterococcus hirae, Enterococcus raffinosus, Enterococcus avium, Enterococcus casseliflavus, Enterococcus mundtii and Enterococcus durans. All the isolates tested were susceptible to vancomycin, but resistance to tetracycline, erythromycin, ampicillin and gentamicin was also observed among 61.0, 61.0, 45.1 and 32.7% of the isolates, respectively. Sixty (53.1%) of the isolates were multidrug resistant presenting as 24 different resistance patterns with resistance to gentamicin-erythromycin-streptomycin-tetracycline (CN-ERY-STR-TET) being the most common (n = 11) pattern. In addition to expression of virulence traits (haemolysin, gelatinase, biofilm production), antibiotic resistance (tetK, tetL, tetM, tetO and ermB) and virulence (asa1, gelE, cylA) genes were detected among the isolates. Also, in vitro transfer of resistance determinants was observed among 75% of the isolates tested. Our data revealed poultry, cattle and manure in this area are hosts to varying Enterococcus species harbouring virulence and resistance determinants that can be transferred to other organisms and also are important for causing nosocomial infection.
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页码:451 / 458
页数:7
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共 315 条
  • [41] Gregson DB(2016)Nosocomial infections and their control strategies Comparative Immunology, Microbiology and Infectious Diseases 46 27-1602
  • [42] Pitout JDD(2015)Antimicrobial resistance and virulence profiles of Poultry Science 94 867-4479
  • [43] Ross T(2014) spp. isolated from horses in Korea Sokoto Journal of Veterinary Science 12 45-3
  • [44] Church DL(2016)Faecal enterococci from camels in Tunisia: species, antibiotic resistance and virulent genes Frontiers in Microbiology 7 1354-1865
  • [45] Laupland KD(2016)Antibiotic resistance and virulence of faecal enterococci isolated from food-producing animals in Tunisia Agriculture and Natural Resources 50 199-26
  • [46] Parkins MD(2012)Occurrence of antimicrobial resistance and virulence genes, and distribution of enterococcal clonal complex 17 from animals and human beings in Korea Revista do Instituto Adolfo Lutz (Impresso) 71 237-723
  • [47] Bourafa N(2010)Simplified mammalian DNA isolation procedure Zoonoses and Public Health 57 171-undefined
  • [48] Loucif L(2016)Prevalence and antimicrobial resistance of Enterococcus species of food animal origin from Beijing and Shandong Province, China Infectious Diseases in Clinical Practice 24 227-undefined
  • [49] Boutenfnouchet N(1996)Characterization of fecal vancomycin-resistant enterococci with acquired and intrinsic resistance mechanisms in wild animals Antimicrobial Agents and Chemotherapy 40 2562-undefined
  • [50] Rolain J-M(2012)Detection of vancomycin-resistant Journal of Food Protection 75 1595-undefined