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    Multiple recombinant events in human T-cell Leukemia virus Type 1: complete sequences of recombinant African strains

    Autor: 
    Cassar, Oliver
    ;
    Desrames, Alexandra
    ;
    Marçais, Antoine
    ;
    Gout, Olivier F.
    ;
    Taylor, Graham P.
    ;
    Hermine, Olivier
    ;
    Soriano, Vicente
    ;
    Mendoza, Carmen de
    ;
    Dehan, Océane
    ;
    Mener, Margot Le
    ;
    Afonso, Philippe V.
    ;
    Gessain, Antoine
    Fecha: 
    01/01/2020
    Palabra clave: 
    HTLV-1; molecular epidemiology; recombination; Africa; HTLV-1 complete genome; reverse transcription; Scopus; JCR
    Revista / editorial: 
    Emerging Microbes and Infections
    Tipo de Ítem: 
    Articulo Revista Indexada
    URI: 
    https://reunir.unir.net/handle/123456789/10248
    DOI: 
    https://doi.org/10.1080/22221751.2020.1752117
    Dirección web: 
    https://www.tandfonline.com/doi/full/10.1080/22221751.2020.1752117
    Open Access
    Resumen:
    Africa is the largest endemic area for HTLV-1, with many molecular genotypes. We previously demonstrated that some strains from North Africa (a-NA clade) originated from a recombinant event between Senegalese and West African strains. A series of 52 new HTLV-1 strains from 13 North and West African countries were sequenced in the LTR region and/or a env gene fragment. Four samples from French Guyanese of African origin were also added. Furthermore, 7 complete sequences from different genotypes were characterized. Phylogenetic analyses showed that most of the new African strains belong to the Cosmopolitan a-genotype. Ten new strains from the a-NA clade were found in Morocco, Western Sahara, Mali, Guinea, Côte d'Ivoire and Ghana. A new a-G-Rec clade, which arose from a distinct recombination event between Senegalese and West African strains, was identified in Guinea and Ghana. The complete sequences suggest that recombination occur in the LTR as well as the env/pol region of the genome, thus a-NA and a-G-Rec strains have a mosaic profile with genetic segments from either a-WA or a-Sen strains. Our work demonstrates that recombination in HTLV-1 may not be as rare an event as previously proposed.
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