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Is the Rate of Insertion and Deletion Mutation Male Biased?: Molecular Evolutionary Analysis of Avian and Primate Sex Chromosome Sequences

Overview
Journal Genetics
Specialty Genetics
Date 2003 May 17
PMID 12750337
Citations 9
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Abstract

The rate of mutation for nucleotide substitution is generally higher among males than among females, likely owing to the larger number of DNA replications in spermatogenesis than in oogenesis. For insertion and deletion (indel) mutations, data from a few human genetic disease loci indicate that the two sexes may mutate at similar rates, possibly because such mutations arise in connection with meiotic crossing over. To address origin- and sex-specific rates of indel mutation we have conducted the first large-scale molecular evolutionary analysis of indels in noncoding DNA sequences from sex chromosomes. The rates are similar on the X and Y chromosomes of primates but about twice as high on the avian Z chromosome as on the W chromosome. The fact that indels are not uncommon on the nonrecombining Y and W chromosomes excludes meiotic crossing over as the main cause of indel mutation. On the other hand, the similar rates on X and Y indicate that the number of DNA replications (higher for Y than for X) is also not the main factor. Our observations are therefore consistent with a role of both DNA replication and recombination in the generation of short insertion and deletion mutations. A significant excess of deletion compared to insertion events is observed on the avian W chromosome, consistent with gradual DNA loss on a nonrecombining chromosome.

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References
1.
Montell H, Fridolfsson A, Ellegren H . Contrasting levels of nucleotide diversity on the avian Z and W sex chromosomes. Mol Biol Evol. 2001; 18(11):2010-6. DOI: 10.1093/oxfordjournals.molbev.a003742. View

2.
Crow J . The origins, patterns and implications of human spontaneous mutation. Nat Rev Genet. 2001; 1(1):40-7. DOI: 10.1038/35049558. View

3.
Makova K, Li W . Strong male-driven evolution of DNA sequences in humans and apes. Nature. 2002; 416(6881):624-6. DOI: 10.1038/416624a. View

4.
Ellegren H . Human mutation--blame (mostly) men. Nat Genet. 2002; 31(1):9-10. DOI: 10.1038/ng0502-9. View

5.
Ebersberger I, Metzler D, Schwarz C, Paabo S . Genomewide comparison of DNA sequences between humans and chimpanzees. Am J Hum Genet. 2002; 70(6):1490-7. PMC: 379137. DOI: 10.1086/340787. View