Rapidly evolving pathogens, such as viruses and bacteria, accumulate genetic change at a similar timescale over which their epidemiological processes occur, such that, it is possible to make inferences about their infectious spread using phylogenetic time-trees. For this purpose it is necessary to choose a phylodynamic model. However, the resulting inferences are contingent on whether the model adequately describes key features of the data. Model adequacy methods allow formal rejection of a model if it cannot generate the main features of the data. We present TreeModelAdequacy, a package for the popular BEAST2 software that allows assessing the adequacy of phylodynamic models. We illustrate its utility by analyzing phylogenetic trees from t...
A key priority in infectious disease research is to understand the ecological and evolutionary drive...
Phylodynamic analyses using pathogen genetic data have become popular for making epidemiological inf...
Mutations that accumulate in the genome of cells or viruses can be used to infer their evolutionary ...
Rapidly evolving pathogens, such as viruses and bacteria, accumulate genetic change at a similar tim...
Rapidly evolving pathogens, such as viruses and bacteria, accumulate genetic change at a similar tim...
Rapidly evolving pathogens, such as viruses and bacteria, accumulate genetic change at a similar tim...
Rapidly evolving pathogens, such as viruses and bacteria, accumulate genetic change at a similar tim...
Rapidly evolving pathogens, such as viruses and bacteria, accumulate genetic change at a similar tim...
Rapidly evolving pathogens, such as viruses and bacteria, accumulate genetic change at a similar tim...
Rapidly evolving pathogens, such as viruses and bacteria, accumulate genetic change at a similar tim...
Population genetic modeling can enhance Bayesian phylogenetic inference by providing a realistic pri...
Population genetic modeling can enhance Bayesian phylogenetic inference by providing a realistic pri...
Time-stamped, trait-annotated phylogenetic trees built from virus genome data are increasingly used ...
A key priority in infectious disease research is to understand the ecological and evolutionary drive...
<div><p>A key priority in infectious disease research is to understand the ecological and evolutiona...
A key priority in infectious disease research is to understand the ecological and evolutionary drive...
Phylodynamic analyses using pathogen genetic data have become popular for making epidemiological inf...
Mutations that accumulate in the genome of cells or viruses can be used to infer their evolutionary ...
Rapidly evolving pathogens, such as viruses and bacteria, accumulate genetic change at a similar tim...
Rapidly evolving pathogens, such as viruses and bacteria, accumulate genetic change at a similar tim...
Rapidly evolving pathogens, such as viruses and bacteria, accumulate genetic change at a similar tim...
Rapidly evolving pathogens, such as viruses and bacteria, accumulate genetic change at a similar tim...
Rapidly evolving pathogens, such as viruses and bacteria, accumulate genetic change at a similar tim...
Rapidly evolving pathogens, such as viruses and bacteria, accumulate genetic change at a similar tim...
Rapidly evolving pathogens, such as viruses and bacteria, accumulate genetic change at a similar tim...
Population genetic modeling can enhance Bayesian phylogenetic inference by providing a realistic pri...
Population genetic modeling can enhance Bayesian phylogenetic inference by providing a realistic pri...
Time-stamped, trait-annotated phylogenetic trees built from virus genome data are increasingly used ...
A key priority in infectious disease research is to understand the ecological and evolutionary drive...
<div><p>A key priority in infectious disease research is to understand the ecological and evolutiona...
A key priority in infectious disease research is to understand the ecological and evolutionary drive...
Phylodynamic analyses using pathogen genetic data have become popular for making epidemiological inf...
Mutations that accumulate in the genome of cells or viruses can be used to infer their evolutionary ...