Meiotic drivers are selfish elements that bias their own transmission into more than half of the viable progeny produced by a driver+/driver− heterozygote. Meiotic drivers are thought to exist for relatively short evolutionary timespans because a driver gene or gene family is often found in a single species or in a group of very closely related species. Additionally, drivers are generally considered doomed to extinction when they spread to fixation or when suppressors arise. In this study, we examine the evolutionary history of the wtf meiotic drivers first discovered in the fission yeast Schizosaccharomyces pombe. We identify homologous genes in three other fission yeast species, S. octosporus, S. osmophilus, and S. cryophilus, which are e...
In S. pombe strains mutant for rec15 aberrant ascus morphology, reduced spore viability and severe r...
Meiotic drivers bias gametogenesis to ensure their transmission into more than half the offspring of...
Fission yeasts have a unique life history and exhibit distinct evolutionary patterns from other yeas...
Meiotic drivers are selfish elements that bias their own transmission into more than half the progen...
Meiotic drivers are selfish alleles that can force their transmission into more than 50% of the viab...
This work is licensed under a Creative Commons Attribution 4.0 International License.Killer meiotic ...
Meiotic drivers are selfish alleles that subvert gametogenesis to increase their transmission into p...
Meiotic drivers are selfish alleles that subvert gametogenesis to increase their transmission into p...
Mutation and recombination are key evolutionary processes governing phenotypic variation and reprodu...
International audienceMeiotic recombination is a major factor of genome evolution, deeply characteri...
Mutation and recombination are key evolutionary processes governing phenotypic variation and reprodu...
Mutation and recombination are key evolutionary processes governing phenotypic variation and reprodu...
Killer meiotic drive elements are selfish genetic entities that manipulate the sexual cycle to promo...
SummaryMeiosis is a specialized form of cell division by which sexually reproducing diploid organism...
The fission yeast clade - comprising Schizosaccharomyces pombe, S. octosporus, S. cryophilus, and S....
In S. pombe strains mutant for rec15 aberrant ascus morphology, reduced spore viability and severe r...
Meiotic drivers bias gametogenesis to ensure their transmission into more than half the offspring of...
Fission yeasts have a unique life history and exhibit distinct evolutionary patterns from other yeas...
Meiotic drivers are selfish elements that bias their own transmission into more than half the progen...
Meiotic drivers are selfish alleles that can force their transmission into more than 50% of the viab...
This work is licensed under a Creative Commons Attribution 4.0 International License.Killer meiotic ...
Meiotic drivers are selfish alleles that subvert gametogenesis to increase their transmission into p...
Meiotic drivers are selfish alleles that subvert gametogenesis to increase their transmission into p...
Mutation and recombination are key evolutionary processes governing phenotypic variation and reprodu...
International audienceMeiotic recombination is a major factor of genome evolution, deeply characteri...
Mutation and recombination are key evolutionary processes governing phenotypic variation and reprodu...
Mutation and recombination are key evolutionary processes governing phenotypic variation and reprodu...
Killer meiotic drive elements are selfish genetic entities that manipulate the sexual cycle to promo...
SummaryMeiosis is a specialized form of cell division by which sexually reproducing diploid organism...
The fission yeast clade - comprising Schizosaccharomyces pombe, S. octosporus, S. cryophilus, and S....
In S. pombe strains mutant for rec15 aberrant ascus morphology, reduced spore viability and severe r...
Meiotic drivers bias gametogenesis to ensure their transmission into more than half the offspring of...
Fission yeasts have a unique life history and exhibit distinct evolutionary patterns from other yeas...