Antimicrobial Susceptibility and Resistance Mechanisms in Mannheimia haemolytica Isolates from Sheep at Slaughter
Julio Alvarez1,2, Johan M Calderón Bernal1, Laura Torre-Fuentes2
1Departamento de Sanidad Animal, Facultad de Veterinaria, Universidad Complutense, 28040 Madrid, Spain.
Abstract:
Mannheimia haemolytica is the main pathogen contributing to pneumonic pasteurellosis in sheep. The aim of this study was to investigate the antimicrobial resistance levels in M. haemolytica isolates from the lungs of slaughtered sheep and to examine the genetic resistance mechanisms involved. A total of 256 M. haemolytica isolates, 169 from lungs with pneumonic lesions and 87 from lungs without lesions, were analyzed by the disk diffusion method for 12 antimicrobials, and the whole genome of 14 isolates was sequenced to identify antimicrobial resistance determinants. Levels of phenotypic resistance ranged from <2% for 10 antimicrobials (amoxicillin, amoxicillin-clavulanic, ceftiofur, cefquinome, lincomycin/spectinomycin, gentamicin, erythromycin, florfenicol, enrofloxacin, and doxycycline) to 4.3% for tetracycline and 89.1% for tylosin. Six isolates carried tetH genes and four isolates carried, in addition, the strA and sul2 genes in putative plasmid sequences. No mutations associated with macrolide resistance were identified in 23 rDNA sequences, suggesting that the M. haemolytica phenotypic results for tylosin should be interpreted with care in the absence of well-established epidemiological and clinical breakpoints. The identification of strains phenotypically resistant to tetracycline and of several resistance genes, some of which were present in plasmids, highlights the need for continuous monitoring of susceptibility patterns in Pasteurellaceae isolates from livestock.
Insights
Mannheimia haemolytica, a key sheep pathogen, shows high tylosin resistance (89.1%) and tetracycline resistance (4.3%). Genetic analysis revealed tetracycline and other resistance genes, emphasizing ongoing surveillance in livestock.
Area of Science:
- Veterinary Microbiology
- Antimicrobial Resistance
- Genomics
Background:
- Mannheimia haemolytica is a primary cause of pneumonic pasteurellosis in sheep.
- Understanding antimicrobial resistance in M. haemolytica is crucial for effective disease management in livestock.
Purpose of the Study:
- To determine antimicrobial resistance levels in M. haemolytica isolates from sheep lungs.
- To identify the genetic mechanisms underlying antimicrobial resistance in these isolates.
Main Methods:
- Disk diffusion method used to test 256 M. haemolytica isolates against 12 antimicrobials.
- Whole genome sequencing of 14 isolates to detect antimicrobial resistance determinants.
- Analysis of rDNA sequences for macrolide resistance mutations.
Main Results:
- High phenotypic resistance observed for tylosin (89.1%) and moderate for tetracycline (4.3%).
- tetH, strA, and sul2 resistance genes were identified, some on plasmids.
- No macrolide resistance mutations found in rDNA, suggesting caution in interpreting tylosin resistance data.
Conclusions:
- Continuous monitoring of antimicrobial susceptibility in Pasteurellaceae from livestock is essential.
- The presence of tetracycline resistance genes on plasmids highlights potential for further dissemination.
- Further research is needed to clarify tylosin resistance mechanisms in M. haemolytica.
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