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Comprehensive Characterization of Mycoplasmosis bovis ST52 Strain 16M Reveals Its Pathogenicity and Potential Value
Liang Zhang1,2,3, Tingwei Wang1,2,3, Jilong Wang2,3
1College of Veterinary Medicine, Gansu Agricultural University, Lanzhou 730070, China.
Abstract:
This study aimed to characterize Mycoplasmosis bovis strain 16M-a highly virulent isolate from one Chinese outbreak-as a candidate for challenge models and inactivated vaccine development. We assessed strain 16M through morphological observation, PCR identification, drug susceptibility testing, growth titer and biofilm quantification, immunological profiling, and calf challenge experiments. We used genomic resequencing to evaluate the genetic stability across 150 passages. Classified as the prevalent ST52 lineage in China, strain 16M showed phylogenetic proximity to strain 08M and exhibited multidrug resistance (notably to macrolides). It achieved higher titers and stronger biofilm formation than other isolates and the reference strain PG45. In calves, intratracheal inoculation with 16M induced universal infection, severe pulmonary consolidation, and peribronchial cuffing, with significantly higher disease scores (p < 0.01). The inactivated 16M vaccine elicited elevated antigen-specific IgG titers, PBMC proliferation, and IFN-γ production versus PG45. Post challenge, immunized calves showed reduced pathological lesions, shorter bacterial shedding, and lower disease scores than the infected controls (p < 0.05). Genetic stability was confirmed for virulence-associated genes (e.g., adhesion proteins), with stable titers and biofilm production within 50 generations. Strain 16M combines high virulence for challenge modeling and industrial-scale vaccine suitability, owing to its robust growth, stable immunogenicity, and genetic consistency.
Insights
Mycoplasma bovis strain 16M is a highly virulent pathogen from China, suitable for cattle challenge models and vaccine development. This strain demonstrated robust growth, genetic stability, and induced significant disease, making it a valuable tool.
Area of Science:
- Veterinary Microbiology
- Bovine Pathology
- Vaccine Development
Background:
- Mycoplasma bovis causes significant economic losses in cattle globally.
- Virulent strains are needed for accurate challenge models and effective vaccine testing.
- Strain 16M, a prevalent ST52 lineage from China, was investigated for its potential.
Purpose of the Study:
- To characterize Mycoplasma bovis strain 16M for its suitability in challenge models.
- To evaluate strain 16M for inactivated vaccine development against bovine mycoplasmosis.
- To assess the genetic stability and virulence of strain 16M.
Main Methods:
- Morphological observation, PCR, drug susceptibility testing, growth/biofilm quantification.
- Genomic resequencing for genetic stability across 150 passages.
- Calf challenge experiments and immunological profiling post-vaccination.
Main Results:
- Strain 16M exhibited multidrug resistance and superior growth/biofilm formation compared to controls.
- Intratracheal inoculation in calves led to severe pneumonia and significantly higher disease scores.
- An inactivated 16M vaccine successfully elicited immune responses and reduced disease severity in challenged calves.
Conclusions:
- Mycoplasma bovis strain 16M is a highly virulent isolate suitable for bovine challenge models.
- Its robust growth, genetic stability, and immunogenicity support its use in inactivated vaccine development.
- Strain 16M offers a valuable candidate for advancing research and control strategies for bovine mycoplasmosis.
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