Evidence map›Paper›PMID 40300562›Full record

ArticleIntervirology2025

Genetic and Antigenic Variability in VP4 and VP7 of Group A Human Rotavirus in Yunnan, China, from 2015 to 2020.

Haoyu Ma, Meifen Wang, Liufang Chuan, Shuying Long, Lijuan Qiu, Canchun Zhao, Qiangming Sun, Zhen Zhang, Hongchao Jiang

Abstract read
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Article in Intervirology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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5 · Who and what money

Authors and funding

9 authors.

Haoyu MaKunming Children's Hospital (Kunming Medical University Affiliated Children's Hospital), Kunming, China.
Meifen WangKunming Children's Hospital (Kunming Medical University Affiliated Children's Hospital), Kunming, China.
Liufang ChuanThe Affiliated Hospital of Yunnan University, Kunming, China.
Shuying LongKunming Children's Hospital (Kunming Medical University Affiliated Children's Hospital), Kunming, China.
Lijuan QiuKunming Children's Hospital (Kunming Medical University Affiliated Children's Hospital), Kunming, China.
Canchun ZhaoYunnan University of Traditional Chinese Medicine, Kunming, China.
Qiangming SunInstitute of Medical Biology, Chinese Academy of Medical Sciences and Peking Union Medical College, Kunming, China.
Zhen ZhangThe Affiliated Hospital of Yunnan University, Kunming, China.
Hongchao JiangKunming Children's Hospital (Kunming Medical University Affiliated Children's Hospital), Kunming, China.

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

backgroundRotavirus (RV) A is one of the major reasons which causes acute dehydration and diarrhea. It is also one of the highest morbid diseases in children. There are only a few reports about the changes in prevalence and VP4/VP7 genotype of RVs in southwest China. Here is the report about the prevalence of RVs from 2015 to 2020 in Yunnan, southwest China.

methodsThe virus genes were extracted from RV positive samples, then VP4/VP7 genes were amplified, followed by sequencing and gene typing, phylogenetic analysis, antigenic epitope variation analysis, and selective pressure analysis were also performed.

resultsA total of 135 VP4 gene sequences and 143 VP7 gene sequences were obtained from stool samples during 2015-2020. Of them, P[8] genotype accounted for 97.0% of the total, while the P[4] genotype accounted for 3.0%. As for the VP7 genotype, G9 genotype accounted for 86.0% of the total, the G3 genotype accounted for 9.1%, and the G2 genotype accounted for 4.9%. G9P[8] was identified as the predominant RV strain during the epidemic season in Yunnan during 2015-2020. Phylogenetic analysis showed that G9 genotype sequences were primarily similar to African strains (KJ753473, KY661937), while P[8] genotype sequences were close to Southeast Asian strains (JQ837878, KX362594). In antigenic epitope variation analysis, among 37 epitopes of P[8] genotype, the RotaTeq™ vaccine strain covers 31 amino acid positions, Rotarix™ covers 28 amino acid positions, while LLR covers only 9. In the representative sequence of the G9 genotype, RotaTeq™ vaccine strains cover 27 out of 29 amino acid positions, Rotarix™ covers 16 positions, and LLR covers 16 positions. The results of the selective pressure analysis indicated potential positive sites for the G9P[8] genotype located at vp7-44, vp7-100, vp7-221, vp7-278, vp4-3, and vp4-4.

conclusionsOur study shows that G9P[8] is the most dominant RV genotype in Yunnan, China. Consistent with the recent epidemic trend of RV strains in China, this study could provide new perspectives on vaccine research.

Indexed as

Antigenic VariationAntigens, ViralCapsid ProteinsGenetic VariationRotavirusRotavirus InfectionsChild, PreschoolChinaEpitopesFecesGenotypeHumansInfantPhylogenyPrevalenceSequence Analysis, DNAAntigens, ViralCapsid ProteinsEpitopesVP4 protein, RotavirusVP7 protein, RotavirusAntigen epitope variationPhylogenetic analysisPrevalenceRotavirus A

Identifiers

PMID40300562
PMCPMC12237282

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