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.

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.