X-linked meiotic drivers cause X-bearing sperm to be produced in excess by male carriers, leading to female-biased sex ratios. Here, we find general conditions for the spread and fixation of X-linked alleles. Our conditions show that the spread of X-linked alleles depends on sex-specific selection and transmission rather than the time spent in each sex. Applying this logic to meiotic drive, we show that polymorphism is heavily dependent on sperm competition induced both by female and male mating behavior and the degree of compensation to gamete loss in the ejaculate size of drive males. We extend these evolutionary models to investigate the demographic consequences of biased sex ratios. Our results suggest driving X-alleles that invade and ...
Although Mendel\u27s first law predicts that crosses between XY (or XO) males and XX females should ...
Background: Diploid organisms have two copies of all genes, but only one is carried by each haploid ...
During speciation, sex chromosomes often accumulate interspecific genetic incompatibilities faster t...
X-linked meiotic drivers cause X-bearing sperm to be produced in excess by male carriers, leading to...
Segregation distorters located on sex chromosomes are predicted to sweep to fixation and cause extin...
Selfish 'meiotic drive' alleles are transmitted to more than 50% of offspring, allowing them to rapi...
This is the final version. Available on open access from the Royal Society via the DOI in this recor...
Funding for Open Access provided by the UMD Libraries Open Access Publishing Fund.Although sex chrom...
Meiotic drive genes are a class of segregation distorter that gain a transmission advantage in heter...
The evolution of heteromorphic sex chromosomes creates a genetic condition favoring the invasion of ...
Segregation distorters located on sex chromosomes are predicted to sweep to fixation and cause extin...
Sex ratio distortion (sex-ratio for short) has been reported in numerous species such as Drosophila,...
International audienceSex-ratio (SR) meiotic drivers are X-linked selfish genetic elements that prom...
Selfish ‘meiotic drive’ alleles are transmitted to more than 50% of offspring, allowing them to rapi...
Segregation distorters located on sex chromosomes are predicted to sweep to fixation and cause extin...
Although Mendel\u27s first law predicts that crosses between XY (or XO) males and XX females should ...
Background: Diploid organisms have two copies of all genes, but only one is carried by each haploid ...
During speciation, sex chromosomes often accumulate interspecific genetic incompatibilities faster t...
X-linked meiotic drivers cause X-bearing sperm to be produced in excess by male carriers, leading to...
Segregation distorters located on sex chromosomes are predicted to sweep to fixation and cause extin...
Selfish 'meiotic drive' alleles are transmitted to more than 50% of offspring, allowing them to rapi...
This is the final version. Available on open access from the Royal Society via the DOI in this recor...
Funding for Open Access provided by the UMD Libraries Open Access Publishing Fund.Although sex chrom...
Meiotic drive genes are a class of segregation distorter that gain a transmission advantage in heter...
The evolution of heteromorphic sex chromosomes creates a genetic condition favoring the invasion of ...
Segregation distorters located on sex chromosomes are predicted to sweep to fixation and cause extin...
Sex ratio distortion (sex-ratio for short) has been reported in numerous species such as Drosophila,...
International audienceSex-ratio (SR) meiotic drivers are X-linked selfish genetic elements that prom...
Selfish ‘meiotic drive’ alleles are transmitted to more than 50% of offspring, allowing them to rapi...
Segregation distorters located on sex chromosomes are predicted to sweep to fixation and cause extin...
Although Mendel\u27s first law predicts that crosses between XY (or XO) males and XX females should ...
Background: Diploid organisms have two copies of all genes, but only one is carried by each haploid ...
During speciation, sex chromosomes often accumulate interspecific genetic incompatibilities faster t...