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Published on: October 23, 2011
Detection of genes encoding multidrug resistance and biofilm virulence factor in uterine pathogenic bacteria
V R Kasimanickam1, K Owen1, R K Kasimanickam1
1Department of Veterinary Clinical Sciences, College of Veterinary Medicine, Washington State University, Pullman, Washington, USA.
Abstract:
Reckless use of antibiotics and/or development of biofilm are the rationale for the development of multidrug resistance (MDR) of pathogenic bacteria. The objective of the present study was to detect MDR genes in Trueperella pyogenes and to detect biofilm virulence factor (VF) genes in Escherichia coli isolated from the uterus of postpartum dairy cows. Uterine secretions from different parity postpartum Holstein cows (n = 40) were collected using cytobrush technique after a sterile procedure from cows with varying degree of uterine inflammatory conditions. The cytobrush was stored in a specimen collector, placed in a cooler with ice, and transported to the laboratory within 2 hours. The pathogens were isolated and were identified initially by their colony morphology and biochemical characteristics. To further identify and classify the single species, and to determine the presence of MDR and VF genes, the genes fragments were amplified using the respective primers by either singleplex or multiplex polymerase chain reaction protocol, and amplicons were detected by electrophoresis method. T pyogenes was isolated in 17 of 40 (42.5%) cows in the study population as recognized by the 16S rRNA gene. Of the positive T pyogenes samples, 8 of 17 (42.1%) were positive for integron type 1 (intI I), and none were positive for integron type 2 (intI II). Of those 8 positive for intI I, six of eight (66.7%) were positive for amplicons aadA5 and aadA24-ORF1 at 1048 and 1608 bp, respectively, associated with specific drug resistance. Presence of addA5 indicated resistance to sulfadiazine, bacitracin, florfenicol, and ceftiofur. Presence of addA24-ORF1 indicated resistant to sulfadiazine, bacitracin, penicillin, clindamycin, and erythromycin. E coli was isolated in 18 of 40 (45.0%) cows in the study population. The genes for VF, Agn43a, and Agn43 b, associated with biofilm production, were found in 6 of 18 (33.3%) of the positive isolates. Both T pyogenes MDR gene and E coli biofilm VF existed in more severe form of uterine diseases than subclinical endometritis. In conclusion, 35% of T pyogenes isolates found were positive for a gene cassette associated with antibiotic resistance, and 33% of the E coli isolates contained genes for the VF associated with biofilm production.
Insights
Multidrug resistance (MDR) genes in Trueperella pyogenes and biofilm virulence factor (VF) genes in Escherichia coli were detected in postpartum dairy cows. Antibiotic resistance and biofilm production were linked to more severe uterine diseases.
Area of Science:
- Veterinary Microbiology
- Bacterial Genetics
- Antimicrobial Resistance
Background:
- Multidrug resistance (MDR) in pathogenic bacteria is a growing concern, driven by antibiotic misuse and biofilm formation.
- Trueperella pyogenes and Escherichia coli are significant pathogens in bovine uterine infections.
- Understanding the genetic basis of MDR and virulence factors is crucial for effective treatment and control.
Purpose of the Study:
- To identify multidrug resistance (MDR) genes in Trueperella pyogenes isolated from postpartum dairy cows.
- To detect biofilm virulence factor (VF) genes in Escherichia coli from the same cohort.
- To correlate the presence of these genes with the severity of uterine inflammatory conditions.
Main Methods:
- Uterine secretions were collected from 40 postpartum Holstein cows.
- Pathogens were isolated and identified using morphological, biochemical, and 16S rRNA gene sequencing.
- MDR and VF genes were amplified via polymerase chain reaction (PCR) and detected by electrophoresis.
Main Results:
- Trueperella pyogenes was isolated from 42.5% of cows; 42.1% of these carried the integron type 1 (intI I) gene, with 66.7% of those also possessing aadA5 and aadA24-ORF1 resistance genes.
- Escherichia coli was isolated from 45.0% of cows; 33.3% of these harbored biofilm-associated genes (Agn43a, Agn43b).
- The presence of T. pyogenes MDR genes and E. coli biofilm VFs was associated with more severe uterine diseases compared to subclinical endometritis.
Conclusions:
- 35% of T. pyogenes isolates carried antibiotic resistance gene cassettes.
- 33% of E. coli isolates possessed virulence factor genes associated with biofilm production.
- These findings highlight the genetic basis of antimicrobial resistance and virulence in uterine pathogens of dairy cows, impacting disease severity.
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