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Antigen-Capture Enzyme-Linked Immunosorbent Assay for Specific Detection of Mycoplasma pneumoniae
Published on: February 24, 2023
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.
Abstract:
The aim of the study was to analyse experimental transmission of Mycoplasma synoviae, an avian pathogen. Three experiments using specific pathogen-free day-old chicks placed in isolators were conducted. In the first experiment, the birds were introduced in an isolator previously contaminated with a M. synoviae broth culture. After 34 days, these birds were eliminated and, for the second trial, the chicks were introduced in the same isolator without disinfecting. In the third assay, the chicks were placed in an isolator containing a mixture of food, feathers and dust collected less than an hour earlier from a M. synoviae infected laying hen flock. In the second and third experiments in order to exacerbate the M. synoviae infection, the birds were inoculated with infectious bronchitis (IB) virus. The presence of M. synoviae in the environment and in tracheal swabs was monitored by culture, a multiplex PCR (mPCR) detecting M. synoviae and Mycoplasma 16S rDNA and a multiplex RT-PCR (mRT-PCR) detecting the M. synoviae mRNA coding for a membrane protein and Mycoplasma 16S rRNA. In in vitro experimental conditions, M. synoviae mRNA and 16S rRNA were detected up to 20 min and 23 h respectively after mycoplasma death. In the first assay, the first infected bird was detected on the 13th day. In the second trial, culturable M. synoviae or viable M. synoviae were detected in the isolator for 3 or 4 to 5 days respectively after depopulation of the birds of the first assay whereas the first culture positive tracheal swabs were detected on the 33rd day, after IB inoculation. In the third experiment, the first infected birds were detected on the 54th day. Thus, the different assays showed that M. synoviae contaminated material (dust, feathers and food) can infect chicks, sometimes after remarkably long silent periods.
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.

