Correlation of multi-drug resistance integron genes, blaESBL carriage of Extended-spectrum β-lactamas producing clinical isolates from equine with respiratory disorders

Shaimaa Ramadan Ahmed Abd El Mawgoud 1, Soumaya SA El Shafii 1, *, Azza N Farag 1, Shahein M 1, Ibrahim E 1, Hammad O Hammed 2 and Sultan F Nagati 2

1 Bacteriology Department, Equine Bacterial Diseases Unit Animal health research institute (AHRI), Agriculture research center (ARC). Egypt.
2 Department of Bacteriology, Animal Health Research Institute (AHRI), Agriculture Research Center (ARC), Egypt.
 
Research Article
International Journal of Scientific Research Updates, 2021, 02(01), 037–054.
Article DOI: 10.53430/ijsru.2021.2.1.0037
Publication history: 
Received on 17 October 2021; revised on 28 November 2021; accepted on 30 November 2021
 
Abstract: 
The present study was aimed to identify phenotypical and genotypic antimicrobial characterization of clinical isolates obtained from equine with respiratory disorders in Egypt, as well as the correlation between the β-lactamases and integron genes in clinical isolates.
Thirty two clinical isolates were identified as K.pneumoneae (15 isolates); P.aeruginosa (8 isolates); S.zooepidemicus (3 isolates) and S.equi (6 isolates). All isolates showed resistance to more than 3 classes of antibiotic and were considered as multidrug resistance isolates (MRD isolates),
K. pneumoneae harbor ctx-M genes and shv-1 gene in highest rate (53.3% and 60% respectively). P.aeruginosa isolates harbor ctx-M genes and shv-1 gene (20% and 33.3% respectively) while S.equi and S.zooepidemicus harbor only ctx-M genes (33.3% and 20% respectively), tem-1 gene was observed in S. equi (66.7%) followed by K,pneumoneae (33.3%) and absent in P.aeruginosa. Significant correlation or association of intI genes with ctx-M genes in K. pneumoneae, P.aeruginosa and streptococcus species was observed, while it was significant with shv-1 in K.pneumoneae and streptococcus species. The significance was at p<0.05.
It was concluded that the detection of integrons in most of the bacterial isolates promoters the phenomenon of in depth resistance because of these mobile genetic elements therefore the detection of those mobile gene cassettes in equine may be a keystone of multidrug resistance. Companion animals predominantly contain bla-ctx-M clusters, which might be animal origin, causing quick changes in drug-resistance epidemiology. ctx-M-1 and shv-1 also are commonly found among human pathogens signifying a standard clonal heredity and a possible ESBL dissemination source in farm and livestock.
 
Keywords: 
Ctx-M genes; Shv-1 gene; Multidrug resistance MDR; Equine; ESBL β-lactamase
 
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