Understanding the genomic basis of adaptation to different abiotic environments is important in the context of climate change and resulting short-term environmental fluctuations. Using functional and comparative genomics approaches, we here investigated whether signatures of genomic adaptation to a set of environmental parameters are concentrated in specific subsets of genes and functions in lacertid lizards and other vertebrates. We first identify 200 genes with signatures of positive diversifying selection from transcriptomes of 24 species of lacertid lizards and demonstrate their involvement in physiological and morphological adaptations to climate. To understand how functionally similar these genes are to previously predicted candidate ...
Populations adapting independently to the same environment provide important insights into the repea...
Vertebrate ectotherms such as reptiles provide ideal organisms for the study of adaptation to enviro...
Environmental gradients constrain physiological performance and thus species' ranges, suggesting tha...
Understanding the genomic basis of adaptation to different abiotic environments is important in the ...
Integrated knowledge on phenotype, physiology and genomic adaptations is required to understand the ...
© 2019, The Author(s). Climatic conditions changing over time and space shape the evolution of organ...
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...
Populations adapting independently to the same environment provide important insights into the repea...
Vertebrate ectotherms such as reptiles provide ideal organisms for the study of adaptation to enviro...
Environmental gradients constrain physiological performance and thus species' ranges, suggesting tha...
Understanding the genomic basis of adaptation to different abiotic environments is important in the ...
Integrated knowledge on phenotype, physiology and genomic adaptations is required to understand the ...
© 2019, The Author(s). Climatic conditions changing over time and space shape the evolution of organ...
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...
Populations adapting independently to the same environment provide important insights into the repea...
Vertebrate ectotherms such as reptiles provide ideal organisms for the study of adaptation to enviro...
Environmental gradients constrain physiological performance and thus species' ranges, suggesting tha...