The evolution of organisms is crucially dependent on the evolution of intraspecific variation. Its interactions with selective agents in the biotic and abiotic environments underlie many processes, such as intraspecific competition, resource partitioning and, eventually, species formation. Nevertheless, comparative models of trait evolution neither allow explicit testing of hypotheses related to the evolution of intraspecific variation nor do they simultaneously estimate rates of trait evolution by accounting for both trait mean and variance. Here, we present a model of phenotypic trait evolution using a hierarchical Bayesian approach that simultaneously incorporates interspecific and intraspecific variation. We assume that species-specific...
The incorporation of ecological processes into models of trait evolution is important for understand...
Evolutionary forces affect the distribution of phenotypes both within and among species. Yet, at the...
Models of trait evolution form an important part of macroevolutionary biology. The Brownian motion m...
The evolution of organisms is crucially dependent on the evolution of intraspecific variation. Its i...
The evolution of organisms is crucially dependent on the evolution of intraspecific variation. Its i...
The evolution of organisms is crucially dependent on the evolution of intraspecific variation. Its i...
The evolution of organisms is crucially dependent on the evolution of intraspecific variation. Its i...
The evolution of organisms is crucially dependent on the evolution of intraspecific variation. Its i...
Phylogenetic comparative methods that incorporate intraspecific variability are relatively new and, ...
Phylogenetic comparative methods that incorporate intraspecific variability are relatively new and, ...
Phylogenetic comparative methods that incorporate intraspecific variability are relatively new and, ...
Evolutionary forces affect the distribution of phenotypes both within and among species. Yet, at th...
The incorporation of ecological processes into models of trait evolution is important for understand...
The incorporation of ecological processes into models of trait evolution is important for understand...
Evolutionary forces affect the distribution of phenotypes both within and among species. Yet, at the...
The incorporation of ecological processes into models of trait evolution is important for understand...
Evolutionary forces affect the distribution of phenotypes both within and among species. Yet, at the...
Models of trait evolution form an important part of macroevolutionary biology. The Brownian motion m...
The evolution of organisms is crucially dependent on the evolution of intraspecific variation. Its i...
The evolution of organisms is crucially dependent on the evolution of intraspecific variation. Its i...
The evolution of organisms is crucially dependent on the evolution of intraspecific variation. Its i...
The evolution of organisms is crucially dependent on the evolution of intraspecific variation. Its i...
The evolution of organisms is crucially dependent on the evolution of intraspecific variation. Its i...
Phylogenetic comparative methods that incorporate intraspecific variability are relatively new and, ...
Phylogenetic comparative methods that incorporate intraspecific variability are relatively new and, ...
Phylogenetic comparative methods that incorporate intraspecific variability are relatively new and, ...
Evolutionary forces affect the distribution of phenotypes both within and among species. Yet, at th...
The incorporation of ecological processes into models of trait evolution is important for understand...
The incorporation of ecological processes into models of trait evolution is important for understand...
Evolutionary forces affect the distribution of phenotypes both within and among species. Yet, at the...
The incorporation of ecological processes into models of trait evolution is important for understand...
Evolutionary forces affect the distribution of phenotypes both within and among species. Yet, at the...
Models of trait evolution form an important part of macroevolutionary biology. The Brownian motion m...