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Africa has a high level of genetic diversity of rotavirus strains, which is suggested to be a possible reason contributing to the suboptimal effectiveness of rotavirus vaccines in this region. One strain that contributes to this rotavirus diversity in Africa is the G8P[4]. This study aimed to elucidate the entire genome and evolution of Rwandan G8P[4] strains. Illumina sequencing was performed for twenty-one Rwandan G8P[4] rotavirus strains. Twenty of the Rwandan G8P[4] strains had a pure DS-1-like genotype constellation, and one strain had a reassortant genotype constellation. Notable radical amino acid differences were observed at the neutralization sites when compared with cognate regions in vaccine strains potentially playing a role in neutralization escape. Phylogenetic analysis revealed that the closest relationship was with East African human group A rotavirus (RVA) strains for five of the genome segments. Two genome sequences of the NSP4 genome segment were closely related to bovine members of the DS-1-like family. Fourteen VP1 and eleven VP3 sequences had the closest relationships with the RotaTeq™ vaccine WC3 bovine genes. These findings suggest that the evolution of VP1 and VP3 might have resulted from reassortment events with RotaTeq™ vaccine WC3 bovine genes. The close phylogenetic relationship with East African G8P[4] strains from Kenya and Uganda suggests co-circulation in these countries. These findings highlight the need for continued whole-genomic surveillance to elucidate the evolution of G8P[4] strains, especially after the introduction of rotavirus vaccination.
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http://dx.doi.org/10.3390/pathogens12050658 | DOI Listing |
Infect Genet Evol
September 2025
Next Generation Sequencing Unit, School of Biomedical Sciences, Faculty of Health Sciences, University of the Free State, Bloemfontein, South Africa; Division of Virology, School of Pathology, Faculty of Health Sciences, University of the Free State, Bloemfontein, South Africa. Electronic address: N
The sub-Saharan African region bears the highest burden of rotavirus-associated morbidity and mortality, with substantial genetic diversity observed in circulating strains despite vaccine introduction. The G8 genotype, originally predominant in bovine strains, has increasingly become prevalent in humans, suggesting a possible interface of animal-to-human transmission and highlighting its role in African strain diversity. In this study, we performed whole genome sequencing and evolutionary analysis of 21 archival G8P[4] strains collected through gastroenteritis surveillance in South Africa between 2009 and 2021 from children under five years of age.
View Article and Find Full Text PDFVet Microbiol
September 2025
College of Veterinary Medicine, South China Agricultural University, Guangzhou 510642, China. Electronic address:
Rotavirus (RV) is a major cause of gastroenteritis in both humans and many mammals, including livestock. However, information regarding RV in sheep remains limited, particularly in China. This study reports the first isolation and characterization of the G8-P[1]-I2-R2-C2-M2-A11-N2-T6-E2-H3 type sheep RV strain (GS13) in China.
View Article and Find Full Text PDFViruses
August 2025
Virology Center, Adolfo Lutz Institute, Sao Paulo 01246-902, Brazil.
In Brazil, molecular surveillance expanded after Rotarix™ vaccine introduction, alongside G2P[4] dominance. The G2P[6] genotype, despite sharing the same DS-1-like constellation as G2P[4] strains, remains rare. This retrospective study analyzed eight Brazilian G2P[6] strains (2012-2014) through RT-PCR and 11-segments sequencing, followed by phylogenetic analysis.
View Article and Find Full Text PDFBMC Genomics
August 2025
Chinese PLA Center for Disease Control and Prevention, Beijing, China.
Background: Rotavirus A group (RVA) is a leading cause of viral diarrhea, posing a substantial economic and public health burden. Compared to other enteric viruses, RVA possesses diverse genetic mechanisms, making it more challenging to control and prevent. Moreover, surveillance and evolutionary studies on RVA remain limited in Southern China.
View Article and Find Full Text PDFViruses
June 2025
Interdisciplinary Center for Research in Animal Health (CIISA), Faculty of Veterinary Medicine, University of Lisbon, 1300-477 Lisbon, Portugal.
(. ) remains the leading cause of pediatric diarrhea. Although Angola introduced Rotarix, the human monovalent .
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