Genotypes and Phenotypes of Enterococci Isolated From Broiler Chickens

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creativework.keywords - en
enterococci
broilers (chickens)
antimicrobial resistance
whole genome sequencing
AMR genotypes
AMR phenotypes
creativework.keywords - fr
entérocoques
poulets à griller
résistance antimicrobienne
séquençage du génome entier
génotypes de résistance aux antimicrobiens
phénotypes de résistance aux antimicrobiens
dc.contributor.author
Rehman, Muhammad Attiq
Yin, Xianhua
Zaheer, Rahat
Goji, Noriko
Amoaka, Kingsley K.
McAllister, Tim
Pritchard, Jane
Topp, Edward
Diarra, Moussa S.
dc.date.accessioned
2023-04-24T15:22:24Z
dc.date.available
2023-04-24T15:22:24Z
dc.date.issued
2018-12-13
dc.description.abstract - en
The objective of this study was to investigate the distribution and persistence of antimicrobial resistance genotypes of enterococci from broilers fed bambermycin (BAM), penicillin (PEN), salinomycin (SAL), bacitracin (BAC), or a salinomycin/bacitracin combination (SALBAC) for 35 days. A total of 95 enterococci from cloacal (n = 40), cecal (n = 38), and litter samples collected on day 36 (n = 17) were isolated weekly from day 7 to 36. All isolates were identified by API-20 Strep and their antimicrobial susceptibilities were evaluated using the Sensititre system with the plates for Gram positive bacteria. Whole genome sequencing (WGS) was used to assess their intra- and inter-genetic variability, with a focus on virulence and antibiotic resistance characteristics. All isolates were further characterized for hemolysin production (HEM), bile salt hydrolysis (BSH), and gelatinase (GEL) activities. Of the 95 isolates, Enterococcus faecium (n = 58) and Enterococcus faecalis (n = 24) were the most common Enterococcus species identified. Significant differences in the level of resistance for the E. faecium isolates to ciprofloxacin, macrolide, penicillin and tetracycline were observed among treatments. The bcrR, mefA, and aac(6) genes were higher in BAM treatment than the other groups whereas bcrR, ermA, ermB, aphA(3), and tetL were more prevalent in PEN and BAC treatments. Overall, E. faecium isolates showed a higher prevalence of antimicrobial resistance, but E. faecalis from litter also exhibited a significant level of resistance. A range of 4–15 different virulence genes was detected in E. faecalis. All isolates from litter but one (94.1%) showed BSH activities while 52.9% of them produced GEL. HEM activity was observed only in isolates collected on Day 7 (n = 9) and Day 14 (n = 1). This study confirmed that genetically diverse AMR enterococci harboring virulence factors can be promoted by the use of certain antimicrobials in feed. Such enterococci could persist in broiler chickens and their litter, which can potentially contaminate the soil upon land application.
dc.description.abstract-fosrctranslation - fr
The objective of this study was to investigate the distribution and persistence of antimicrobial resistance genotypes of enterococci from broilers fed bambermycin (BAM), penicillin (PEN), salinomycin (SAL), bacitracin (BAC), or a salinomycin/bacitracin combination (SALBAC) for 35 days. A total of 95 enterococci from cloacal (n = 40), cecal (n = 38), and litter samples collected on day 36 (n = 17) were isolated weekly from day 7 to 36. All isolates were identified by API-20 Strep and their antimicrobial susceptibilities were evaluated using the Sensititre system with the plates for Gram positive bacteria. Whole genome sequencing (WGS) was used to assess their intra- and inter-genetic variability, with a focus on virulence and antibiotic resistance characteristics. All isolates were further characterized for hemolysin production (HEM), bile salt hydrolysis (BSH), and gelatinase (GEL) activities. Of the 95 isolates, Enterococcus faecium (n = 58) and Enterococcus faecalis (n = 24) were the most common Enterococcus species identified. Significant differences in the level of resistance for the E. faecium isolates to ciprofloxacin, macrolide, penicillin and tetracycline were observed among treatments. The bcrR, mefA, and aac(6) genes were higher in BAM treatment than the other groups whereas bcrR, ermA, ermB, aphA(3), and tetL were more prevalent in PEN and BAC treatments. Overall, E. faecium isolates showed a higher prevalence of antimicrobial resistance, but E. faecalis from litter also exhibited a significant level of resistance. A range of 4–15 different virulence genes was detected in E. faecalis. All isolates from litter but one (94.1%) showed BSH activities while 52.9% of them produced GEL. HEM activity was observed only in isolates collected on Day 7 (n = 9) and Day 14 (n = 1). This study confirmed that genetically diverse AMR enterococci harboring virulence factors can be promoted by the use of certain antimicrobials in feed. Such enterococci could persist in broiler chickens and their litter, which can potentially contaminate the soil upon land application.
dc.identifier.citation
Rehman M., Yin X., Zaheer R., Goji N., Amoako K., McAllister T., Pritchard J., Topp E., & Diarra M. (2018). Genotypes and Phenotypes of Enterococci Isolated From Broiler Chickens. Frontier Sustainable Food Systems, 2, 83. https://doi.org/10.3389/fsufs.2018.00083
dc.identifier.doi
https://doi.org/10.3389/fsufs.2018.00083
dc.identifier.issn
2571-581X
dc.identifier.uri
https://open-science.canada.ca/handle/123456789/244
dc.language.iso
en
dc.publisher
Frontiers
dc.rights.openaccesslevel - en
Gold
dc.rights.openaccesslevel - fr
Or
dc.subject - en
Agriculture
dc.subject - fr
Agriculture
dc.subject.en - en
Agriculture
dc.subject.fr - fr
Agriculture
dc.title - en
Genotypes and Phenotypes of Enterococci Isolated From Broiler Chickens
dc.title.fosrctranslation - fr
Genotypes and Phenotypes of Enterococci Isolated From Broiler Chickens
dc.type - en
Article
dc.type - fr
Article
local.article.journaltitle
Frontiers in Sustainable Food Systems
local.article.journalvolume
2
local.article.pagination
83
local.peerreview - en
Yes
local.peerreview - fr
Oui
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