Variation in the degree of insect wing melanin affects thermoregulation, and is expected to be adapted to local environmental conditions, for example over an elevational gradient. The effects of melanization on flight activity and egg maturation rate were assessed in the closely related butterflies Colias philodice eriphyle and C. eurytheme using experimental manipulation of wing darkness and transplant experiments between high and low elevation sites. Experimental manipulation of wing darkness in C. p. eriphyle demonstrated that light males had reduced flight activity at high elevations, and darkened males had reduced flight activity at low elevations. In contrast, the transplant experiments revealed asymmetrical adaptation for male C. p. ...
Background Trait evolution and plasticity are expected to interactively influence responses to clima...
The large white butterfly, Pieris brassicae, shows a seasonal polyphenism of wing melanisation, spri...
Anthropogenic climate change alters seasonal conditions without altering photoperiod and can thus cr...
Variation in the degree of insect wing melanin affects thermoregulation, and is expected to be adapt...
Many insect populations become darker at high elevations and high latitudes. Despite absence of empi...
Alpine melanism, a tendency to become darker with increased elevation and latitude, occurs in many s...
The relatively large and colourful wings are by far the most apparent feature of adult butterflies. ...
Cold developmental conditions can greatly affect adult life history of ectotherms in seasonal habita...
The evolution of butterfly wing colouration is strongly affected by its multiple functions and by th...
Evolutionary studies typically focus on adaptations to particular environmental conditions, thereby ...
International audience1. This study provides evidence that a heliophilic butterfly, the Glanville fr...
International audienceABSTRACT Within populations, phenotypic plasticity may allow adaptive phenotyp...
The large white butterfly, Pieris brassicae, shows a seasonal polyphenism of wing melanisation, spri...
International audience1. Temperature acts as a major factor on the timing of activity and behaviour ...
Flight is a central determinant of fitness in butterflies and other insects, but it is restricted to...
Background Trait evolution and plasticity are expected to interactively influence responses to clima...
The large white butterfly, Pieris brassicae, shows a seasonal polyphenism of wing melanisation, spri...
Anthropogenic climate change alters seasonal conditions without altering photoperiod and can thus cr...
Variation in the degree of insect wing melanin affects thermoregulation, and is expected to be adapt...
Many insect populations become darker at high elevations and high latitudes. Despite absence of empi...
Alpine melanism, a tendency to become darker with increased elevation and latitude, occurs in many s...
The relatively large and colourful wings are by far the most apparent feature of adult butterflies. ...
Cold developmental conditions can greatly affect adult life history of ectotherms in seasonal habita...
The evolution of butterfly wing colouration is strongly affected by its multiple functions and by th...
Evolutionary studies typically focus on adaptations to particular environmental conditions, thereby ...
International audience1. This study provides evidence that a heliophilic butterfly, the Glanville fr...
International audienceABSTRACT Within populations, phenotypic plasticity may allow adaptive phenotyp...
The large white butterfly, Pieris brassicae, shows a seasonal polyphenism of wing melanisation, spri...
International audience1. Temperature acts as a major factor on the timing of activity and behaviour ...
Flight is a central determinant of fitness in butterflies and other insects, but it is restricted to...
Background Trait evolution and plasticity are expected to interactively influence responses to clima...
The large white butterfly, Pieris brassicae, shows a seasonal polyphenism of wing melanisation, spri...
Anthropogenic climate change alters seasonal conditions without altering photoperiod and can thus cr...