In the 2016/2017 winter season in Japan, HuNoV GII.P16-GII.2 strains (2016 strains) emerged and caused large outbreaks of acute gastroenteritis. To better understand the outbreaks, we examined the molecular evolution of the VP1 gene and RdRp region in 2016 strains from patients by studying their time-scale evolutionary phylogeny, positive/negative selection, conformational epitopes, and phylodynamics. The time-scale phylogeny suggested that the common ancestors of the 2016 strains VP1 gene and RdRp region diverged in 2006 and 1999, respectively, and that the 2016 strain was the progeny of a pre-2016 GII.2. The evolutionary rates of the VP1 gene and RdRp region were around 10-3 substitutions/site/year. Amino acid substitutions (position 341) in an epitope in the P2 domain of 2016 strains were not found in pre-2016 GII.2 strains. Bayesian skyline plot analyses showed that the effective population size of the VP1 gene in GII.2 strains was almost constant for those 50 years, although the number of patients with NoV GII.2 increased in 2016. The 2016 strain may be involved in future outbreaks in Japan and elsewhere.
Genetic Analysis of Human Norovirus Strains in Japan in 2016–2017
Koo Nagasawa,Yuki Matsushima,T. Motoya,Fuminori Mizukoshi,Y. Ueki,N. Sakon,K. Murakami,Tomomi Shimizu,N. Okabe,Noriko Nagata,K. Shirabe,H. Shinomiya,W. Suzuki,M. Kuroda,T. Sekizuka,Yoshiyuki Suzuki,A. Ryo,Kiyotaka Fujita,K. Oishi,K. Katayama,H. Kimura
Published 2018 in Frontiers in Microbiology
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- Publication year
2018
- Venue
Frontiers in Microbiology
- Publication date
2018-01-18
- Fields of study
Biology, Medicine
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Semantic Scholar, PubMed
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