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- W2000974402 abstract "Abstract Theories to explain the prevalence of sex and recombination have long been a central theme of evolutionary biology. Yet despite decades of attention dedicated to the evolution of sex and recombination, the widespread pattern of sex differences in the recombination rate is not well understood and has received relatively little theoretical attention. Here, we argue that female meiotic drivers—alleles that increase in frequency by exploiting the asymmetric cell division of oogenesis—present a potent selective pressure favoring the modification of the female recombination rate. Because recombination plays a central role in shaping patterns of variation within and among dyads, modifiers of the female recombination rate can function as potent suppressors or enhancers of female meiotic drive. We show that when female recombination modifiers are unlinked to female drivers, recombination modifiers that suppress harmful female drive can spread. By contrast, a recombination modifier tightly linked to a driver can increase in frequency by enhancing female drive. Our results predict that rapidly evolving female recombination rates, particularly around centromeres, should be a common outcome of meiotic drive. We discuss how selection to modify the efficacy of meiotic drive may contribute to commonly observed patterns of sex differences in recombination." @default.
- W2000974402 created "2016-06-24" @default.
- W2000974402 creator A5044378657 @default.
- W2000974402 creator A5075618092 @default.
- W2000974402 date "2012-02-01" @default.
- W2000974402 modified "2023-10-16" @default.
- W2000974402 title "Scrambling Eggs: Meiotic Drive and the Evolution of Female Recombination Rates" @default.
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- W2000974402 doi "https://doi.org/10.1534/genetics.111.136721" @default.