Joint estimation of effective population size and selection coefficient without neutrel markers: method validation and application to experimental evolution of viruses
ROUSSEAU, Elsa
Institut Sophia Agrobiotech [ISA]
Unité de Pathologie Végétale [PV]
Biological control of artificial ecosystems [BIOCORE]
Institut Sophia Agrobiotech [ISA]
Unité de Pathologie Végétale [PV]
Biological control of artificial ecosystems [BIOCORE]
MAILLERET, Ludovic
Institut Sophia Agrobiotech [ISA]
Biological control of artificial ecosystems [BIOCORE]
Voir plus >
Institut Sophia Agrobiotech [ISA]
Biological control of artificial ecosystems [BIOCORE]
ROUSSEAU, Elsa
Institut Sophia Agrobiotech [ISA]
Unité de Pathologie Végétale [PV]
Biological control of artificial ecosystems [BIOCORE]
Institut Sophia Agrobiotech [ISA]
Unité de Pathologie Végétale [PV]
Biological control of artificial ecosystems [BIOCORE]
MAILLERET, Ludovic
Institut Sophia Agrobiotech [ISA]
Biological control of artificial ecosystems [BIOCORE]
< Réduire
Institut Sophia Agrobiotech [ISA]
Biological control of artificial ecosystems [BIOCORE]
Langue
en
Communication dans un congrès
Ce document a été publié dans
13. International plant virus epidemiology symposium, 2016-06-06, Avignon. 2016p. 165 p.
Résumé en anglais
Experimental evolution studies deserve considerable attention to the estimation of basic evolutionary forces such as selection and genetic drift. With the advent of high-throughput sequencing techniques, these studies ...Lire la suite >
Experimental evolution studies deserve considerable attention to the estimation of basic evolutionary forces such as selection and genetic drift. With the advent of high-throughput sequencing techniques, these studies gained a renewed attention. However the joint estimation of selection and genetic drift still remain challenging when no neutral markers are available, a common situation with many microbes, such as viruses, due to their small tightly packed genomes.< Réduire
Origine
Importé de halUnités de recherche