Climatic conditions changing over time and space shape the evolution of organisms at multiple levels, including temperate lizards in the family Lacertidae. Here we reconstruct a dated phylogenetic tree of 262 lacertid species based on a supermatrix relying on novel phylogenomic datasets and fossil calibrations. Diversification of lacertids was accompanied by an increasing disparity among occupied bioclimatic niches, especially in the last 10 Ma, during a period of progressive global cooling. Temperate species also underwent a genome-wide slowdown in molecular substitution rates compared to tropical and desert-adapted lacertids. Evaporative water loss and preferred temperature are correlated with bioclimatic parameters, indicating physiologi...
Species may exhibit similar thermal tolerances via either common ancestry or environmental filtering...
Integrated knowledge on phenotype, physiology and genomic adaptations is required to understand the ...
Understanding how quickly physiological traits evolve is a topic of great interest, particularly in ...
Climatic conditions changing over time and space shape the evolution of organisms at multiple levels...
Climatic conditions changing over time and space shape the evolution of organisms at multiple levels...
© 2019, The Author(s). Climatic conditions changing over time and space shape the evolution of organ...
Understanding the genomic basis of adaptation to different abiotic environments is important in the ...
The evolutionary diversification of many terrestrial vertebrate groups is strongly linked to climati...
Lacerta viridis and Lacerta bilineata are sister species of European green lizards (eastern and west...
Species may exhibit similar thermal tolerances via either common ancestry or environmental filtering...
Integrated knowledge on phenotype, physiology and genomic adaptations is required to understand the ...
Understanding how quickly physiological traits evolve is a topic of great interest, particularly in ...
Climatic conditions changing over time and space shape the evolution of organisms at multiple levels...
Climatic conditions changing over time and space shape the evolution of organisms at multiple levels...
© 2019, The Author(s). Climatic conditions changing over time and space shape the evolution of organ...
Understanding the genomic basis of adaptation to different abiotic environments is important in the ...
The evolutionary diversification of many terrestrial vertebrate groups is strongly linked to climati...
Lacerta viridis and Lacerta bilineata are sister species of European green lizards (eastern and west...
Species may exhibit similar thermal tolerances via either common ancestry or environmental filtering...
Integrated knowledge on phenotype, physiology and genomic adaptations is required to understand the ...
Understanding how quickly physiological traits evolve is a topic of great interest, particularly in ...