Patterns and Mechanisms of Sex Ratio Distortion in the Collaborative Cross Mouse Mapping Population

Author:

Haines Brett A.,Barradale Francesca,Dumont Beth L.ORCID

Abstract

ABSTRACTIn species with single-locus, chromosome-based mechanisms of sex determination, the laws of segregation predict an equal ratio of females to males at birth. Here, we show that departures from this Mendelian expectation are commonplace in the 8-way recombinant inbred Collaborative Cross (CC) mouse population. More than one-third of CC strains exhibit significant sex ratio distortion (SRD) at wean, with twice as many male-biased than female-biased strains. We show that these pervasive sex biases persist across multiple breeding environments, are stable over time, are not fully mediated by maternal effects, and are not explained by sex-biased neonatal mortality. SRD exhibits a heritable component, but QTL mapping analyses and targeted investigations of sex determination genes fail to nominate any large effect loci. These findings, combined with the reported absence of sex ratio biases in the CC founder strains, suggest that SRD manifests from multilocus combinations of alleles only uncovered in recombined CC genomes. We speculate that the genetic shuffling of eight diverse parental genomes during the early CC breeding generations led to the decoupling of sex-linked drivers from their co-evolved suppressors, unleashing complex, multiallelic systems of sex chromosome drive. Consistent with this interpretation, we show that several CC strains exhibit copy number imbalances at co-evolved X-and Y-linked ampliconic genes that have been previously implicated in germline genetic conflict and SRD in house mice. Overall, our findings reveal the pervasiveness of SRD in the CC population and nominate the CC as a powerful resource for investigating sex chromosome genetic conflict in action.ARTICLE SUMMARYWe compiled breeding records from The Collaborative Cross (CC) mouse mapping population to quantify the frequency and explore potential mechanisms of sex ratio distortion. Strikingly, more than one-third of CC strains yield significantly sex-biased litters. These sex biases are not mediated by environmental effects and are moderately heritable. We conclude that the widespread sex ratio distortion in the CC manifests from multilocus permutations of selfish sex-linked elements and suppressors that are only recovered in the recombinant CC strains.

Publisher

Cold Spring Harbor Laboratory

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