Background: Population genetic theory predicts that rapid adaptation is largely driven by complex traits encoded by many loci of small effect. Because large-effect loci are quickly fixed in natural populations, they should not contribute much to rapid adaptation. Results: To investigate the genetic architecture of thermal adaptation — a highly complex trait — we performed experimental evolution on a natural Drosophila simulans population. Transcriptome and respiration measurements reveal extensive metabolic rewiring after only approximately 60 generations in a hot environment. Analysis of genome-wide polymorphisms identifies two interacting selection targets, Sestrin and SNF4Aγ, pointing to AMPK, a central metabolic...
Background: Despite its pervasiveness, the genetic basis of adaptation resulting in variation direct...
Theory predicts that geographic variation in traits and genes associated with climatic adaptation ma...
The molecular mechanisms underlying adaptation have eluded evolutionary biologists even with the adv...
Background: Population genetic theory predicts that rapid adaptation is largely driven by complex tr...
Background: Population genetic theory predicts that rapid adaptation is largely driven by complex tr...
Population genetic theory predicts that rapid adaptation is largely driven by complex traits encoded...
The genetic architecture of adaptive traits is of key importance to predict evolutionary responses. ...
The genetic architecture of adaptive traits is of key importance to predict evolutionary responses. ...
Doctor of PhilosophyDivision of BiologyTheodore MorganTemperature is a critical environmental parame...
Background Understanding the genetic architecture of temperature adaptation is key for characterizin...
The genomic basis of adaptation to novel environments is a fundamental problem in evolutionary biolo...
Evolutionary change of thermal traits (i.e. heat tolerance and behavioral thermoregulation) is one o...
Organisms are exposed to temperatures that vary, for example on diurnal and seasonal time scales. Th...
The genomic basis of adaptation to novel environments is a fundamental problem in evolutionary biolo...
Background: Despite its pervasiveness, the genetic basis of adaptation resulting in variation direct...
Theory predicts that geographic variation in traits and genes associated with climatic adaptation ma...
The molecular mechanisms underlying adaptation have eluded evolutionary biologists even with the adv...
Background: Population genetic theory predicts that rapid adaptation is largely driven by complex tr...
Background: Population genetic theory predicts that rapid adaptation is largely driven by complex tr...
Population genetic theory predicts that rapid adaptation is largely driven by complex traits encoded...
The genetic architecture of adaptive traits is of key importance to predict evolutionary responses. ...
The genetic architecture of adaptive traits is of key importance to predict evolutionary responses. ...
Doctor of PhilosophyDivision of BiologyTheodore MorganTemperature is a critical environmental parame...
Background Understanding the genetic architecture of temperature adaptation is key for characterizin...
The genomic basis of adaptation to novel environments is a fundamental problem in evolutionary biolo...
Evolutionary change of thermal traits (i.e. heat tolerance and behavioral thermoregulation) is one o...
Organisms are exposed to temperatures that vary, for example on diurnal and seasonal time scales. Th...
The genomic basis of adaptation to novel environments is a fundamental problem in evolutionary biolo...
Background: Despite its pervasiveness, the genetic basis of adaptation resulting in variation direct...
Theory predicts that geographic variation in traits and genes associated with climatic adaptation ma...
The molecular mechanisms underlying adaptation have eluded evolutionary biologists even with the adv...