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Published on: April 20, 2011
Nationwide and long-term molecular epidemiologic studies of mumps viruses that circulated in Japan between 1986 and
Minoru Kidokoro1, Teiichiro Shiino2, Tomohiro Yamaguchi3
1Department of Quality Assurance, Radiation Safety, and Information Management, National Institute of Infectious Diseases, Tokyo, Japan.
Abstract:
In Japan, major mumps outbreaks still occur every 4-5 years because of low mumps vaccine coverage (30-40%) owing to the voluntary immunization program. Herein, to prepare for a regular immunization program, we aimed to reveal the nationwide and long-term molecular epidemiological trends of the mumps virus (MuV) in Japan. Additionally, we performed whole-genome sequencing (WGS) using next-generation sequencing to assess results from conventional genotyping using MuV sequences of the small-hydrophobic (SH) gene. We analyzed 1,064 SH gene sequences from mumps clinical samples and MuV isolates collected from 25 prefectures from 1986 to 2017. The results showed that six genotypes, namely B (110), F (1), G (900), H (3), J (41), and L (9) were identified, and the dominant genotypes changed every decade in Japan since the 1980s. Genotype G has been exclusively circulating since the early 2000s. Seven clades were identified for genotype G using SH sequence-based classification. To verify the results, we performed WGS on 77 representative isolates of genotype G using NGS and phylogenetically analyzed them. Five clades were identified with high bootstrap values and designated as Japanese clade (JPC)-1, -2, -3, -4, -5. JPC-1 and -3 accounted for over 80% of the total genotype G isolates (68.3 and 13.8%, respectively). Of these, JPC-2 and -5, were newly identified clades in Japan through this study. This is the first report describing the nationwide and long-term molecular epidemiology of MuV in Japan. The results provide information about Japanese domestic genotypes, which is essential for evaluating the mumps elimination progress in Japan after the forthcoming introduction of the mumps vaccine into Japan's regular immunization program. Furthermore, the study shows that WGS analysis using NGS is more accurate than results obtained from conventional SH sequence-based classification and is a powerful tool for accurate molecular epidemiology studies.
Insights
Mumps virus (MuV) genotypes in Japan have shifted over decades, with genotype G dominating since the early 2000s. Whole-genome sequencing offers a more accurate method for tracking mumps epidemiology.
Area of Science:
- Virology
- Epidemiology
- Genetics
Background:
- Mumps outbreaks persist in Japan due to low vaccine coverage (30-40%) from a voluntary immunization program.
- Understanding long-term molecular epidemiology is crucial for implementing a regular immunization program.
Purpose of the Study:
- To reveal nationwide and long-term molecular epidemiological trends of mumps virus (MuV) in Japan.
- To compare whole-genome sequencing (WGS) with conventional genotyping for mumps virus analysis.
Main Methods:
- Analysis of 1,064 small-hydrophobic (SH) gene sequences from MuV clinical samples and isolates (1986-2017).
- Whole-genome sequencing (WGS) of 77 genotype G isolates using next-generation sequencing (NGS).
- Phylogenetic analysis of SH gene sequences and WGS data.
Main Results:
- Six MuV genotypes (B, F, G, H, J, L) were identified, with dominant genotypes changing decennially.
- Genotype G has exclusively circulated since the early 2000s, with five Japanese clades (JPC-1 to -5) identified via WGS.
- JPC-1 and JPC-3 comprised over 80% of genotype G isolates; JPC-2 and JPC-5 were newly identified.
Conclusions:
- This study provides the first nationwide, long-term molecular epidemiology of MuV in Japan.
- Findings are essential for evaluating mumps elimination progress following the introduction of routine vaccination.
- WGS using NGS is a more accurate tool for molecular epidemiology than SH gene-based classification.
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