The X chromosome is present as a single copy in the heterogametic sex, and this hemizygosity is expected to drive unusual patterns of evolution on the X relative to the autosomes. For example, the hemizgosity of the X may lead to a lower chromosomal effective population size compared to the autosomes, suggesting that the X might be more strongly affected by genetic drift. However, the X may also experience stronger positive selection than the autosomes, because recessive beneficial mutations will be more visible to selection on the X where they will spend less time being masked by the dominant, less beneficial allele-a proposal known as the faster-X hypothesis. Thus, empirical studies demonstrating increased genetic divergence on the X chro...
Genes may acquire nonsynonymous substitutions more rapidly when X-linked than when autosomal, but ev...
Due to its hemizygous inheritance and role in sex determination, the X-chromosome is expected to pla...
Sexual selection drives faster evolution in males. The X chromosome is potentially an important targ...
<div><p>The X chromosome is present as a single copy in the heterogametic sex, and this hemizygosity...
The X chromosome is present as a single copy in the heterogametic sex, and this hemizygosity is expe...
The X chromosome is present as a single copy in the heterogametic sex, and this hemizygosity is expe...
The X chromosome is present as a single copy in the heterogametic sex, and this hemizygosity is expe...
In species with a heterogametic sex, population genetics theory predicts that DNA sequences on the X...
DNA sequences on X chromosomes often have a faster rate of evolution when compared to similar loci o...
Population genetics models predict that the X (or Z) chromosome will evolve at faster rates than the...
Under certain circumstances, X-linked loci are expected to experience more adaptive substitutions th...
Under certain circumstances, X-linked loci are expected to experience more adaptive substitutions th...
Under certain circumstances, X-linked loci are expected to experience more adaptive substitutions th...
Population genetics models show that, under certain conditions, the X chromosome is expected to be u...
Evolutionary patterns on the X chromosome differ from those on the autosomes. Several recent studies...
Genes may acquire nonsynonymous substitutions more rapidly when X-linked than when autosomal, but ev...
Due to its hemizygous inheritance and role in sex determination, the X-chromosome is expected to pla...
Sexual selection drives faster evolution in males. The X chromosome is potentially an important targ...
<div><p>The X chromosome is present as a single copy in the heterogametic sex, and this hemizygosity...
The X chromosome is present as a single copy in the heterogametic sex, and this hemizygosity is expe...
The X chromosome is present as a single copy in the heterogametic sex, and this hemizygosity is expe...
The X chromosome is present as a single copy in the heterogametic sex, and this hemizygosity is expe...
In species with a heterogametic sex, population genetics theory predicts that DNA sequences on the X...
DNA sequences on X chromosomes often have a faster rate of evolution when compared to similar loci o...
Population genetics models predict that the X (or Z) chromosome will evolve at faster rates than the...
Under certain circumstances, X-linked loci are expected to experience more adaptive substitutions th...
Under certain circumstances, X-linked loci are expected to experience more adaptive substitutions th...
Under certain circumstances, X-linked loci are expected to experience more adaptive substitutions th...
Population genetics models show that, under certain conditions, the X chromosome is expected to be u...
Evolutionary patterns on the X chromosome differ from those on the autosomes. Several recent studies...
Genes may acquire nonsynonymous substitutions more rapidly when X-linked than when autosomal, but ev...
Due to its hemizygous inheritance and role in sex determination, the X-chromosome is expected to pla...
Sexual selection drives faster evolution in males. The X chromosome is potentially an important targ...