Whole genome in-silico analysis of south african G1P[8] rotavirus strains before and after vaccine introduction over a period of 14 years

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Abstract

Rotavirus G1P[8] strains account for more than half of the group A rotavirus (RVA) infections in children under five years of age, globally. A total of 103 stool samples previously characterized as G1P[8] and collected seven years before and seven years after introducing the Rotarix® vaccine in South Africa were processed for whole-genome sequencing. All the strains analyzed had a Wa-like constellation (G1-P[8]-I1-R1-C1-M1-A1-N1-T1-E1-H1). South African preand post-vaccine G1 strains were clustered in G1 lineage-I and II while the majority (84.2%) of the P[8] strains were grouped in P[8] lineage-III. Several amino acid sites across ten gene segments with the exception of VP7 were under positive selective pressure. Except for the N147D substitution in the antigenic site of eight post-vaccine G1 strains when compared to both Rotarix® and pre-vaccine strains, most of the amino acid substitutions in the antigenic regions of post-vaccine G1P[8] strains were already present during the pre-vaccine period. Therefore, Rotarix® did not appear to have an impact on the amino acid differences in the antigenic regions of South African post-vaccine G1P[8] strains. However, continued whole-genome surveillance of RVA strains to decipher genetic changes in the post-vaccine period remains imperative.

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APA

Mwangi, P. N., Mogotsi, M. T., Seheri, M. L., Mphahlele, M. J., Peenze, I., Esona, M. D., … Nyaga, M. M. (2020). Whole genome in-silico analysis of south african G1P[8] rotavirus strains before and after vaccine introduction over a period of 14 years. Vaccines, 8(4), 1–20. https://doi.org/10.3390/vaccines8040609

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