Literature DB >> 29782933

Whole-genome sequencing and analyses identify high genetic heterogeneity, diversity and endemicity of rotavirus genotype P[6] strains circulating in Africa.

Martin M Nyaga1, Yi Tan2, Mapaseka L Seheri3, Rebecca A Halpin4, Asmik Akopov4, Karla M Stucker4, Nadia B Fedorova4, Susmita Shrivastava4, A Duncan Steele5, Jason M Mwenda6, Brett E Pickett4, Suman R Das2, M Jeffrey Mphahlele7.   

Abstract

Rotavirus A (RVA) exhibits a wide genotype diversity globally. Little is known about the genetic composition of genotype P[6] from Africa. This study investigated possible evolutionary mechanisms leading to genetic diversity of genotype P[6] VP4 sequences. Phylogenetic analyses on 167 P[6] VP4 full-length sequences were conducted, which included six porcine-origin sequences. Of the 167 sequences, 57 were newly acquired through whole genome sequencing as part of this study. The other 110 sequences were all publicly-available global P[6] VP4 full-length sequences downloaded from GenBank. The strength of association between the phenotypic features and the phylogeny was also determined. A number of reassortment and mixed infections of RVA genotype P[6] strains were observed in this study. Phylogenetic analyses demostrated the extensive genetic diversity that exists among human P[6] strains, porcine-like strains, their concomitant clades/subclades and estimated that P[6] VP4 gene has a higher substitution rate with the mean of 1.05E-3 substitutions/site/year. Further, the phylogenetic analyses indicated that genotype P[6] strains were endemic in Africa, characterised by an extensive genetic diversity and long-time local evolution of the viruses. This was also supported by phylogeographic clustering and G-genotype clustering of the P[6] strains when Bayesian Tip-association Significance testing (BaTS) was applied, clearly supporting that the viruses evolved locally in Africa instead of spatial mixing among different regions. Overall, the results demonstrated that multiple mechanisms such as reassortment events, various mutations and possibly interspecies transmission account for the enormous diversity of genotype P[6] strains in Africa. These findings highlight the need for continued global surveillance of rotavirus diversity.
Copyright © 2018 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Africa; Bayesian; Diversity; NGS; Phylogenetic; Rotaviruses

Mesh:

Year:  2018        PMID: 29782933      PMCID: PMC6364979          DOI: 10.1016/j.meegid.2018.05.013

Source DB:  PubMed          Journal:  Infect Genet Evol        ISSN: 1567-1348            Impact factor:   3.342


  63 in total

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Journal:  Infect Genet Evol       Date:  2015-11-30       Impact factor: 3.342

5.  Relationships among porcine and human P[6] rotaviruses: evidence that the different human P[6] lineages have originated from multiple interspecies transmission events.

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Authors:  Jacqueline E Tate; Fidele Ngabo; Philippe Donnen; Maurice Gatera; Jeannine Uwimana; Celse Rugambwa; Jason M Mwenda; Umesh D Parashar
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Journal:  Infect Genet Evol       Date:  2019-12-05       Impact factor: 3.342

2.  Generation of Simian Rotavirus Reassortants with VP4- and VP7-Encoding Genome Segments from Human Strains Circulating in Africa Using Reverse Genetics.

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5.  Genetic characterization of G12P[6] and G12P[8] rotavirus strains collected in six African countries between 2010 and 2014.

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Authors:  Wairimu M Maringa; Julia Simwaka; Peter N Mwangi; Evans M Mpabalwani; Jason M Mwenda; M Jeffrey Mphahlele; Mapaseka L Seheri; Martin M Nyaga
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  9 in total

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