A new implication of quasispecies dynamics: Broad virus diversification in absence of external perturbations

Esteban Domingo*, María Eugenia Soria, Isabel Gallego, Ana Isabel de Ávila, Carlos García-Crespo, Brenda Martínez-González, Jordi Gómez, Carlos Briones, Josep Gregori, Josep Quer, Celia Perales

*Corresponding author for this work

    Research output: Contribution to journalReview articleResearchpeer-review

    22 Citations (Scopus)

    Abstract

    RNA genetic elements include many important animal and plant pathogens. They share high mutability, a trait that has multiple implications for the interactions with their host organisms. Here we review evidence of a new adaptive feature of RNA viruses that we term “broadly diversifying selection”. It constitutes a new type of positive selection without participation of any external selective agent, and which is built upon a progressive increase of the number of different genomes that dominate the population. The evidence was provided by analyses of mutant spectrum composition of two important viral pathogens, foot-and-mouth disease virus (FMDV) and hepatitis C virus (HCV) after prolonged replication in their respective cell culture environment. Despite being fueled by mutations that arise randomly and in absence of an external guiding selective force, this type of selection prepares the viral population for a response to selective forces still to occur. Since current evidence suggests that broadly diversifying selection is favored by elevated mutation rates and population sizes, it may constitute a more general behavior, relevant also to the adaptive dynamics of microbial populations and cancer cells.

    Original languageEnglish
    Article number104278
    JournalInfection, Genetics and Evolution
    Volume82
    DOIs
    Publication statusPublished - Aug 2020

    Keywords

    • Adaptive strategies
    • Foot-and-mouth disease virus
    • Hepatitis C virus
    • Mutational waves
    • RNA viruses
    • Selective forces

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