Evolutionary correlations between phenotypic and environmental traits characterize adaptive radiations. However, the lizard genus Liolaemus, one of the most ecologically diverse terrestrial vertebrate radiations on earth, has so far shown limited or mixed evidence of adaptive diversification in phenotype. Restricted use of comprehensive environmental data, incomplete taxonomic representation and not considering phylogenetic uncertainty may have led to contradictory evidence. We compiled a 26-taxon dataset for the Liolaemus gracilis species group, representing much of the ecological diversity represented within Liolaemus and used environmental data to characterize how environments occupied by species' relate to phenotypic evolution. Our anal...
Identification of mechanisms that promote variation in life history traits is critical to understand...
Adaptive radiation theory predicts that phenotypic traits involved in ecological performance evolve ...
Elucidating how ecological and evolutionary mechanisms interact to produce and maintain biodiversity...
Evolutionary correlations between phenotypic and environmental traits characterize adaptive radiatio...
Abstract Background Life diversifies via adaptive radiation when natural selection drives the evolut...
Large-scale patterns of current species geographic range-size variation reflect historical dynamics ...
A central question in evolutionary biology concerns whether the direction of evolution proceeds in t...
Phenotypic evolution can cause either divergent or convergent phenotypic patterns. Even adaptation t...
Large-scale patterns of current species geographic range-size variation reflect historical dynamics ...
Habitat use may lead to variation in diversity among evolutionary lineages because habitats differ i...
Currently, Liolaemus is the second most species-rich reptile genus in the world (257 species), and p...
In face of environmental changes, species, either move, changing their distributions, or maintain th...
Recent radiations are important to evolutionary biologists, because they provide an opportunity to s...
The evolutionary processes that produce adaptive radiations are enigmatic. They can only be studied ...
The correlation between species diversification and morphological evolution has long been of interes...
Identification of mechanisms that promote variation in life history traits is critical to understand...
Adaptive radiation theory predicts that phenotypic traits involved in ecological performance evolve ...
Elucidating how ecological and evolutionary mechanisms interact to produce and maintain biodiversity...
Evolutionary correlations between phenotypic and environmental traits characterize adaptive radiatio...
Abstract Background Life diversifies via adaptive radiation when natural selection drives the evolut...
Large-scale patterns of current species geographic range-size variation reflect historical dynamics ...
A central question in evolutionary biology concerns whether the direction of evolution proceeds in t...
Phenotypic evolution can cause either divergent or convergent phenotypic patterns. Even adaptation t...
Large-scale patterns of current species geographic range-size variation reflect historical dynamics ...
Habitat use may lead to variation in diversity among evolutionary lineages because habitats differ i...
Currently, Liolaemus is the second most species-rich reptile genus in the world (257 species), and p...
In face of environmental changes, species, either move, changing their distributions, or maintain th...
Recent radiations are important to evolutionary biologists, because they provide an opportunity to s...
The evolutionary processes that produce adaptive radiations are enigmatic. They can only be studied ...
The correlation between species diversification and morphological evolution has long been of interes...
Identification of mechanisms that promote variation in life history traits is critical to understand...
Adaptive radiation theory predicts that phenotypic traits involved in ecological performance evolve ...
Elucidating how ecological and evolutionary mechanisms interact to produce and maintain biodiversity...