4.8 Article

Deleterious nutations and the evolution of sex

Journal

SCIENCE
Volume 290, Issue 5490, Pages 331-333

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.290.5490.331

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It has been suggested that sexual reproduction is maintained because it reduces the load imposed by recurrent deleterious mutations. If rates of deleterious mutation per diploid genome per generation (U) exceed 1, and mutations interact synergistically, then sexuals can overcome their inherent twofold disadvantage. We have tested this hypothesis by estimating genomic point mutation rates for protein-coding genes in a range of animal taxa. We find a positive Linear relationship between U and generation time. In species with short generation times. U is predicted to be far below 1, suggesting that sex is not maintained by its capacity to purge the genome of deleterious mutations.

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