This article develops a theoretical framework to link dynamical and population genetic models of persistent viral infection. This linkage is useful because, while the dynamical and population genetic theories have developed independently, the biological processes they describe are completely interrelated. Parameters of the dynamical models are important determinants of evolutionary processes such as natural selection and genetic drift. We develop analytical methods, based on coupled differential equations and Markov chain theory, to predict the accumulation of genetic diversity within the viral population as a function of dynamical parameters. These methods are first applied to the standard model of viral dynamics and then generalized to co...
The contemporary genomic diversity of viruses is a result of the continuous and dynamic interaction ...
Various factors determine the rate at which mutations are generated and fixed in viral genomes. Vira...
Viruses are fast evolving pathogens that continuously adapt to the highly variable environments they...
A discrete time genetics model is developed for populations that are undergoing selection due to inf...
Viruses evolve in infected host populations, and host population dynamics affect viral evolution. RN...
Viruses evolve in infected host populations, and host population dynamics affect viral evolution. RN...
International audienceHigh-throughput sequencing has opened the route for a deep assessment of withi...
International audienceHigh-throughput sequencing has opened the route for a deep assessment of withi...
Viruses evolve in infected host populations, and host population dynamics affect viral evolution. RN...
Viruses evolve in infected host populations, and host population dynamics affect viral evolution. RN...
Viruses evolve in infected host populations, and host population dynamics affect viral evolution. RN...
Rapidly evolving pathogens like influenza viruses can persist by changing their antigenic properties...
Viruses have attracted the interest of researchers from multiple disciplines and have nucleated many...
Phylogenetic trees can be used to study the evolution of any sequence that evolves, including viruse...
Phylogenetic trees can be used to study the evolution of any sequence that evolves, including viruse...
The contemporary genomic diversity of viruses is a result of the continuous and dynamic interaction ...
Various factors determine the rate at which mutations are generated and fixed in viral genomes. Vira...
Viruses are fast evolving pathogens that continuously adapt to the highly variable environments they...
A discrete time genetics model is developed for populations that are undergoing selection due to inf...
Viruses evolve in infected host populations, and host population dynamics affect viral evolution. RN...
Viruses evolve in infected host populations, and host population dynamics affect viral evolution. RN...
International audienceHigh-throughput sequencing has opened the route for a deep assessment of withi...
International audienceHigh-throughput sequencing has opened the route for a deep assessment of withi...
Viruses evolve in infected host populations, and host population dynamics affect viral evolution. RN...
Viruses evolve in infected host populations, and host population dynamics affect viral evolution. RN...
Viruses evolve in infected host populations, and host population dynamics affect viral evolution. RN...
Rapidly evolving pathogens like influenza viruses can persist by changing their antigenic properties...
Viruses have attracted the interest of researchers from multiple disciplines and have nucleated many...
Phylogenetic trees can be used to study the evolution of any sequence that evolves, including viruse...
Phylogenetic trees can be used to study the evolution of any sequence that evolves, including viruse...
The contemporary genomic diversity of viruses is a result of the continuous and dynamic interaction ...
Various factors determine the rate at which mutations are generated and fixed in viral genomes. Vira...
Viruses are fast evolving pathogens that continuously adapt to the highly variable environments they...