Experimental evidence of indirect transmission of Mycoplasma synoviae

Corinne Marois1, Jean-Paul Picault, Marylène Kobisch

  • 1Agence Française de Sécurité Sanitaire des Aliments (AFSSA), Laboratoire d'Etudes et de Recherches Avicoles et Porcines, Unité de Mycoplasmologie Bactériologie, BP 53, 22440 Ploufragan, France.

Veterinary Research
|August 27, 2005
PubMed

Insights

Mycoplasma synoviae can infect chicks through contaminated materials like dust and feathers, even after long periods without detectable signs. This avian pathogen poses a significant risk in poultry farming environments.

Area of Science:

  • Avian Health
  • Microbiology
  • Veterinary Science

Background:

  • Mycoplasma synoviae is a significant avian pathogen affecting poultry health and production.
  • Understanding transmission routes is crucial for controlling its spread in commercial flocks.

Purpose of the Study:

  • To investigate the experimental transmission of Mycoplasma synoviae in specific pathogen-free chicks.
  • To evaluate the role of environmental contamination and co-infection with infectious bronchitis (IB) virus in M. synoviae transmission.

Main Methods:

  • Three experiments were conducted using chicks in isolators, with varying M. synoviae exposure methods (broth culture, contaminated environment, contaminated materials).
  • Infectious bronchitis (IB) virus was used to exacerbate M. synoviae infection in the second and third experiments.
  • Detection of M. synoviae involved environmental and tracheal swab monitoring using culture, multiplex PCR (mPCR), and multiplex RT-PCR (mRT-PCR).

Main Results:

  • M. synoviae transmission occurred through contaminated food, feathers, and dust, leading to infection after extended silent periods (up to 54 days).
  • In vitro studies showed M. synoviae mRNA and 16S rRNA persistence post-death for up to 20 minutes and 23 hours, respectively.
  • Infection was confirmed via culture and PCR methods, with delayed detection in tracheal swabs, especially after IB virus co-inoculation.

Conclusions:

  • Environmental contamination with M. synoviae in materials like dust and feathers is a viable transmission route for poultry.
  • Prolonged "silent periods" of M. synoviae infection are possible, complicating early detection and control efforts.
  • Co-infection with IB virus may influence the manifestation and detection timeline of M. synoviae infections.