Aim Variation in body size across animal species underlies most ecological and evolutionary processes shaping local‐ and large‐scale patterns of biodiversity. For well over a century, climatic factors have been regarded as primary sources of natural selection on animal body size, and hypotheses such as Bergmann's rule (the increase of body size with decreasing temperature) have dominated discussions. However, evidence for consistent climatic effects, especially among ectotherms, remains equivocal. Here, we test a range of key hypotheses on climate‐driven size evolution in squamate reptiles across several spatial and phylogenetic scales. Location Global. Time period Extant. Major taxa studied Squamates (lizar...
Climate may play important roles in speciation, such as causing the range fragmentation that underli...
Climate may play important roles in speciation, such as causing the range fragmentation that underli...
Abstract Background The impact of environmental gradients on the evolution of life history traits is...
Aim: Variation in body size across animal species underlies most ecological and evolutionary process...
Aim: Variation in body size across animal species underlies most ecological and evo‐lutionary proces...
Climatic gradients impose clinal selection on animal ecological and physiological performance, ofte...
Abstract Climatic gradients impose clinal selection on animal ecological and physiological performan...
Ecogeographical rules help explain spatial and temporal patterns in intraspecific body size. However...
Climate change particularly affects ectothermic reptiles that cannot regulate their internal tempera...
Aim Climate is thought to exert a strong influence on animal body sizes. We examined the relationsh...
AimAnimal body sizes are often remarkably variable across islands, but despite much research we stil...
Aim To document geographical interspecific patterns of body size of European and North American squa...
Bergmann's rule predicts larger body sizes in species living in higher latitudes and altitudes. This...
Climate may play important roles in speciation, such as causing the range fragmentation that underli...
Background. The impact of environmental gradients on the evolution of life history traits is a centr...
Climate may play important roles in speciation, such as causing the range fragmentation that underli...
Climate may play important roles in speciation, such as causing the range fragmentation that underli...
Abstract Background The impact of environmental gradients on the evolution of life history traits is...
Aim: Variation in body size across animal species underlies most ecological and evolutionary process...
Aim: Variation in body size across animal species underlies most ecological and evo‐lutionary proces...
Climatic gradients impose clinal selection on animal ecological and physiological performance, ofte...
Abstract Climatic gradients impose clinal selection on animal ecological and physiological performan...
Ecogeographical rules help explain spatial and temporal patterns in intraspecific body size. However...
Climate change particularly affects ectothermic reptiles that cannot regulate their internal tempera...
Aim Climate is thought to exert a strong influence on animal body sizes. We examined the relationsh...
AimAnimal body sizes are often remarkably variable across islands, but despite much research we stil...
Aim To document geographical interspecific patterns of body size of European and North American squa...
Bergmann's rule predicts larger body sizes in species living in higher latitudes and altitudes. This...
Climate may play important roles in speciation, such as causing the range fragmentation that underli...
Background. The impact of environmental gradients on the evolution of life history traits is a centr...
Climate may play important roles in speciation, such as causing the range fragmentation that underli...
Climate may play important roles in speciation, such as causing the range fragmentation that underli...
Abstract Background The impact of environmental gradients on the evolution of life history traits is...