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Mycoplasma hyopneumoniae variability: Current trends and proposed terminology for genomic classification
Alyssa M Betlach1,2, Dominiek Maes3, Laura Garza-Moreno4
1Department of Veterinary Population Medicine, College of Veterinary Medicine, University of Minnesota, St. Paul, Minnesota.
Abstract:
Mycoplasma hyopneumoniae (M. hyopneumoniae) is the aetiologic agent of enzootic pneumonia in swine, a prevalent chronic respiratory disease worldwide. Mycoplasma hyopneumoniae is a small, self-replicating microorganism that possesses several characteristics allowing for limited biosynthetic abilities, resulting in the fastidious, host-specific growth and unique pathogenic properties of this microorganism. Variation across several isolates of M. hyopneumoniae has been described at antigenic, proteomic, transcriptomic, pathogenic and genomic levels. The microorganism possesses a minimal number of genes that regulate the transcription process. Post-translational modifications (PTM) occur frequently in a wide range of functional proteins. The PTM by which M. hyopneumoniae regulates its surface topography could play key roles in cell adhesion, evasion and/or modulation of the host immune system. The clinical outcome of M. hyopneumoniae infections is determined by different factors, such as housing conditions, management practices, co-infections and also by virulence differences among M. hyopneumoniae isolates. Factors contributing to adherence and colonization as well as the capacity to modulate inflammatory and immune responses might be crucial. Different components of the cell membrane (i.e. proteins, glycoproteins and lipoproteins) may serve as adhesins and/or be toxic for the respiratory tract cells. Mechanisms leading to virulence are complex and more research is needed to identify markers for virulence. The utilization of typing methods and complete or partial-gene sequencing for M. hyopneumoniae characterization has increased in diagnostic laboratories as control and elimination strategies for this microorganism are attempted worldwide. A commonly employed molecular typing method for M. hyopneumoniae is Multiple-Locus Variable number tandem repeat Analysis (MLVA). The agreement of a shared terminology and classification for the various techniques, specifically MLVA, has not been described, which makes inferences across the literature unsuitable. Therefore, molecular trends for M. hyopneumoniae have been outlined and a common terminology and classification based on Variable Number Tandem Repeats (VNTR) types has been proposed.
Insights
Mycoplasma hyopneumoniae causes swine enzootic pneumonia. This study proposes a standardized classification for Multiple-Locus Variable number tandem repeat Analysis (MLVA) to improve understanding of M. hyopneumoniae virulence and control strategies.
Area of Science:
- Veterinary Microbiology
- Swine Infectious Diseases
- Molecular Epidemiology
Background:
- Mycoplasma hyopneumoniae is the primary cause of enzootic pneumonia in swine, a significant global swine respiratory disease.
- Variability exists among M. hyopneumoniae isolates at multiple levels, influencing pathogenicity and host immune response.
- Understanding virulence factors and molecular variations is crucial for effective disease control.
Purpose of the Study:
- To address the lack of standardized terminology and classification for M. hyopneumoniae molecular typing methods, particularly MLVA.
- To propose a common terminology and classification system based on Variable Number Tandem Repeats (VNTR) types.
- To facilitate more consistent and comparable data across M. hyopneumoniae research and diagnostics.
Main Methods:
- Review and analysis of existing molecular typing methods for M. hyopneumoniae.
- Focus on Multiple-Locus Variable number tandem Repeat Analysis (MLVA) as a commonly employed technique.
- Development of a proposed classification system based on VNTR types.
Main Results:
- Identified a lack of agreement in terminology and classification for M. hyopneumoniae typing methods in current literature.
- Outlined molecular trends observed in M. hyopneumoniae characterization.
- Proposed a standardized classification system for MLVA based on VNTR types.
Conclusions:
- A standardized classification for M. hyopneumoniae molecular typing, specifically MLVA, is essential for consistent research and diagnostics.
- The proposed VNTR-based classification will improve the comparability of data and aid in understanding M. hyopneumoniae epidemiology and virulence.
- Standardization will support global efforts in controlling and eliminating M. hyopneumoniae infections in swine populations.
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