<p>Heritable phenotypic variation in natural populations exceeds the levels predicted under mutation-selection balance where purifying selection removes variation. Balancing selection, inefficient or weak selection, polygenic adaptation, and non-equilibrium populations are all possible explanations for excess variation. Yet, available genomic data indicate an abundance of directional selection. One potential explanation is that fleeting directional selection drives beneficial mutations to high frequency in rapid waves resulting in many intermediate frequency haplotypes. This hypothesis is supported by the genomic data from a panel of 170 D. simulans genotypes established from a single stable population which show evidence for an abundance o...
Census population size, sex-ratio and female reproductive success were monitored in 10 laboratory po...
The population genetic perspective is that the processes shaping genomic variation can be revealed o...
The genomic basis of adaptation to novel environments is a fundamental problem in evolutionary biolo...
Heritable phenotypic variation in natural populations exceeds the levels predicted under mutation-se...
<p><strong>Abstract</strong>: Heritable phenotypic variation in natural populations exceeds the leve...
<p><strong>Abstract</strong>: Heritable phenotypic variation in natural populations exceeds the leve...
<p><strong>Abstract</strong>: Heritable phenotypic variation in natural populations exceeds the leve...
<p><strong>Abstract</strong>: Heritable phenotypic variation in natural populations exceeds the leve...
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. ...
We present a survey of nucleotide polymorphism of three novel, rapidly evolving genes in populations...
In Drosophila and humans, there are accumulating examples of loci with a significant excess of high-...
Evolution depends on genetic variation generated by mutation or recombination from standing genetic ...
The combination of experimental evolution and next-generation sequencing, termed E&R, has emerge...
Tandem duplications are an essential source of genetic novelty, and their variation in natural popul...
Census population size, sex-ratio and female reproductive success were monitored in 10 laboratory po...
The population genetic perspective is that the processes shaping genomic variation can be revealed o...
The genomic basis of adaptation to novel environments is a fundamental problem in evolutionary biolo...
Heritable phenotypic variation in natural populations exceeds the levels predicted under mutation-se...
<p><strong>Abstract</strong>: Heritable phenotypic variation in natural populations exceeds the leve...
<p><strong>Abstract</strong>: Heritable phenotypic variation in natural populations exceeds the leve...
<p><strong>Abstract</strong>: Heritable phenotypic variation in natural populations exceeds the leve...
<p><strong>Abstract</strong>: Heritable phenotypic variation in natural populations exceeds the leve...
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. ...
We present a survey of nucleotide polymorphism of three novel, rapidly evolving genes in populations...
In Drosophila and humans, there are accumulating examples of loci with a significant excess of high-...
Evolution depends on genetic variation generated by mutation or recombination from standing genetic ...
The combination of experimental evolution and next-generation sequencing, termed E&R, has emerge...
Tandem duplications are an essential source of genetic novelty, and their variation in natural popul...
Census population size, sex-ratio and female reproductive success were monitored in 10 laboratory po...
The population genetic perspective is that the processes shaping genomic variation can be revealed o...
The genomic basis of adaptation to novel environments is a fundamental problem in evolutionary biolo...