Genomic Diversity of a Globally Used, Live Attenuated Mycoplasma Vaccine
Sara M Klose1, Olusola M Olaogun1, Jillian F Disint1
1Asia Pacific Centre for Animal Health, Melbourne Veterinary School, The University of Melbournegrid.1008.9, Victoria, Australia.
Abstract:
The Mycoplasma synoviae live attenuated vaccine strain MS-H (Vaxsafe MS; Bioproperties Pty., Ltd., Australia) is commonly used around the world to prevent chronic infections caused by M. synoviae in birds and to minimize economic losses in the poultry industry. MS-H is a temperature-sensitive strain that is generated via the chemical mutagenesis of a virulent M. synoviae isolate, 86079/7NS. 32 single nucleotide polymorphisms have been found in the genome of MS-H compared to that of 86079/7NS, including 25 in predicted coding sequences (CDSs). There is limited information on the stability of these mutations in MS-H in vitro during the propagation of the vaccine manufacturing process or in vivo after the vaccination of chickens. Here, we performed a comparative analysis of MS-H genomes after in vitro and in vivo passages under different circumstances. Studying the dynamics of the MS-H population can provide insights into the factors that potentially affect the health of vaccinated birds. The genomes of 11 in vitro laboratory passages and 138 MS-H bird reisolates contained a total of 254 sequence variations. Of these, 39 variations associated with CDSs were detected in more than one genome (range = 2 to 62, median = 2.5), suggesting that these sequences are particularly prone to mutations. From the 25 CDSs containing previously characterized variations between MS-H and 86079/7NS, 7 were identified in the MS-H reisolates and progenies examined here. In conclusion, the MS-H genome contains individual regions that are prone to mutations that enable the restoration of the genotype or the phenotype of wild-type 86079/7NS in those regions. However, accumulated mutations in these regions are rare. IMPORTANCE Preventative measures, such as vaccination, are commonly used for the control of mycoplasmal infections in poultry. A live attenuated vaccine strain (Vaxsafe MS; MS-H; Bioproperties Pty. Ltd., Australia) is used for the prevention of disease caused by M. synoviae in many countries. However, information on the stability of previously characterized mutations in the MS-H genome is limited. In this study, we performed a comparative analysis of the whole-genome sequences of MS-H seeds used for vaccine manufacturing, commercial batches of the vaccine, cultures minimally passaged under small-scale laboratory and large-scale manufacturing conditions, MS-H reisolated from specific-pathogen-free (SPF) chickens that were vaccinated under controlled conditions, and MS-H reisolated from vaccinated commercial poultry flocks around the world. This study provides a comprehensive assessment of genome stability in MS-H after in vitro and in vivo passages under different circumstances and suggests that most of the mutations in the attenuated MS-H vaccine strain are stable.
Insights
The Mycoplasma synoviae vaccine strain MS-H shows stable mutations after laboratory and field passages, ensuring its effectiveness in poultry. This study confirms the genetic integrity of the live attenuated vaccine, crucial for preventing infections and economic losses in the poultry industry.
Area of Science:
- Veterinary Microbiology
- Vaccinology
- Genomics
Background:
- Mycoplasma synoviae infections cause significant economic losses in the poultry industry.
- Live attenuated vaccines, like MS-H (Vaxsafe MS), are vital for controlling these infections.
- Limited data exists on the genetic stability of the MS-H vaccine strain after in vitro and in vivo passages.
Purpose of the Study:
- To comprehensively assess the genome stability of the MS-H vaccine strain.
- To compare MS-H genomes after various in vitro and in vivo passages.
- To identify potential mutations affecting vaccine efficacy and bird health.
Main Methods:
- Whole-genome sequencing of MS-H vaccine seeds, manufacturing batches, laboratory passages, and field reisolates.
- Comparative genomic analysis to identify sequence variations.
- Analysis of mutations within coding sequences (CDSs) and their frequency.
Main Results:
- A total of 254 sequence variations were detected across 11 in vitro passages and 138 in vivo reisolates.
- 39 variations in CDSs were found in multiple genomes, indicating mutation-prone regions.
- Seven previously characterized variations between MS-H and its parent strain were identified in reisolates.
Conclusions:
- The MS-H vaccine genome exhibits regions prone to mutation, potentially allowing wild-type genotype/phenotype restoration.
- Accumulated mutations in these specific regions were rare in the studied passages.
- The majority of mutations in the attenuated MS-H vaccine strain appear to be stable, supporting its use in poultry.
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