The canonical model of sex-chromosome evolution predicts that sex-antagonistic (SA) genes play an instrumental role in the arrest of XY recombination and ensuing Y-chromosome degeneration. Although this model might account for the highly differentiated sex chromosomes of birds and mammals, it does not fit the situation of many lineages of fish, amphibians or non-avian reptiles, where sex chromosomes are maintained homomorphic through occasional XY recombination and/or high turnover rates. Such situations call for alternative explanatory frameworks. A crucial issue at stake is the effect of XY recombination on the dynamics of SA genes and deleterious mutations. Using individual-based simulations, we show that a complete arrest of XY recombin...
Deleterious mutations accumulating on non-recombining Y chromosomes can drive XY to XY turnovers, as...
Deleterious mutations accumulating on non-recombining Y chromosomes can drive XY to XY turnovers, as...
In sharp contrast with mammals and birds, many cold-blooded vertebrates present homomorphic sex chro...
The canonical model of sex-chromosome evolution predicts that sex-antagonistic (SA) genes play an in...
The canonical model of sex-chromosome evolution predicts that sex-antagonistic (SA) genes play an in...
The canonical model of sex-chromosome evolution predicts that sex-antagonistic (SA) genes play an in...
The canonical model of sex-chromosome evolution predicts that sex-antagonistic (SA) genes play an in...
Recombination arrest between X and Y chromosomes, driven by sexually antagonistic genes, is expected...
Recombination arrest between X and Y chromosomes, driven by sexually antagonistic genes, is expected...
Recombination arrest between X and Y chromosomes, driven by sexually antagonistic genes, is expected...
Recombination arrest between X and Y chromosomes, driven by sexually antagonistic genes, is expected...
Deleterious mutations accumulating on non-recombining Y chromosomes can drive XY to XY turnovers, as...
Deleterious mutations accumulating on non-recombining Y chromosomes can drive XY to XY turnovers, as...
According to the canonical model of sex-chromosome evolution, the degeneration of Y or W chromosomes...
According to the canonical model of sex-chromosome evolution, the degeneration of Y or W chromosomes...
Deleterious mutations accumulating on non-recombining Y chromosomes can drive XY to XY turnovers, as...
Deleterious mutations accumulating on non-recombining Y chromosomes can drive XY to XY turnovers, as...
In sharp contrast with mammals and birds, many cold-blooded vertebrates present homomorphic sex chro...
The canonical model of sex-chromosome evolution predicts that sex-antagonistic (SA) genes play an in...
The canonical model of sex-chromosome evolution predicts that sex-antagonistic (SA) genes play an in...
The canonical model of sex-chromosome evolution predicts that sex-antagonistic (SA) genes play an in...
The canonical model of sex-chromosome evolution predicts that sex-antagonistic (SA) genes play an in...
Recombination arrest between X and Y chromosomes, driven by sexually antagonistic genes, is expected...
Recombination arrest between X and Y chromosomes, driven by sexually antagonistic genes, is expected...
Recombination arrest between X and Y chromosomes, driven by sexually antagonistic genes, is expected...
Recombination arrest between X and Y chromosomes, driven by sexually antagonistic genes, is expected...
Deleterious mutations accumulating on non-recombining Y chromosomes can drive XY to XY turnovers, as...
Deleterious mutations accumulating on non-recombining Y chromosomes can drive XY to XY turnovers, as...
According to the canonical model of sex-chromosome evolution, the degeneration of Y or W chromosomes...
According to the canonical model of sex-chromosome evolution, the degeneration of Y or W chromosomes...
Deleterious mutations accumulating on non-recombining Y chromosomes can drive XY to XY turnovers, as...
Deleterious mutations accumulating on non-recombining Y chromosomes can drive XY to XY turnovers, as...
In sharp contrast with mammals and birds, many cold-blooded vertebrates present homomorphic sex chro...