Laboratory experiments on Drosophila have often demonstrated increased heritability for morphological and life-history traits under environmental stress. We used parent-offspring comparisons to examine the impact of humidity levels on the heritability of a physiological trait, resistance to heat, measured as knockdown time at constant temperature. Drosophila melanogaster were reared under standard non-stressful conditions and heat-shocked as adults at extreme high or low humidity. Mean knockdown time was decreased in the stressful dry environment but there was a significant sex-by-treatment interaction: at low humidity females were more heat resistant than males, whereas at high humidity the situation was reversed. Phenotypic variability of...
Environmental changes may stress organisms and stimulate an adaptive phenotypic response. Effects of...
To cope with the increasing and less predictable temperature forecasts under climate change, many te...
Background: Populations of Drosophila melanogaster show differences in many morphometrical traits ac...
Laboratory experiments on Drosophila have often demonstrated increased heritability for morphologica...
Laboratory selection in thermal regimes that differed in the amplitude and the predictability of dai...
Environments often vary across a life cycle, imposing fluctuating natural selection across developme...
Thermal tolerance influences the distribution and abundance of many species, but the adaptive capaci...
The adaptability of organisms to novel environmental conditions depends on the amount of genetic var...
Doctor of PhilosophyDivision of BiologyTheodore MorganTemperature is a critical environmental parame...
Understanding the potential for organisms to tolerate thermal stress through physiological or evolut...
Evolutionary change of thermal traits (i.e. heat tolerance and behavioral thermoregulation) is one o...
While numerous insect studies have demonstrated the effects environmental conditions, genetic variat...
Mechanisms of reproductive isolation inhibit gene flow between species and can be broadly sorted int...
Environmental changes may stress organisms and stimulate an adaptive phenotypic response. Effects of...
To cope with the increasing and less predictable temperature forecasts under climate change, many te...
Background: Populations of Drosophila melanogaster show differences in many morphometrical traits ac...
Laboratory experiments on Drosophila have often demonstrated increased heritability for morphologica...
Laboratory selection in thermal regimes that differed in the amplitude and the predictability of dai...
Environments often vary across a life cycle, imposing fluctuating natural selection across developme...
Thermal tolerance influences the distribution and abundance of many species, but the adaptive capaci...
The adaptability of organisms to novel environmental conditions depends on the amount of genetic var...
Doctor of PhilosophyDivision of BiologyTheodore MorganTemperature is a critical environmental parame...
Understanding the potential for organisms to tolerate thermal stress through physiological or evolut...
Evolutionary change of thermal traits (i.e. heat tolerance and behavioral thermoregulation) is one o...
While numerous insect studies have demonstrated the effects environmental conditions, genetic variat...
Mechanisms of reproductive isolation inhibit gene flow between species and can be broadly sorted int...
Environmental changes may stress organisms and stimulate an adaptive phenotypic response. Effects of...
To cope with the increasing and less predictable temperature forecasts under climate change, many te...
Background: Populations of Drosophila melanogaster show differences in many morphometrical traits ac...