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Recombination modulates how selection affects linked sites in Drosophila.

Publication ,  Journal Article
McGaugh, SE; Heil, CSS; Manzano-Winkler, B; Loewe, L; Goldstein, S; Himmel, TL; Noor, MAF
Published in: PLoS biology
January 2012

One of the most influential observations in molecular evolution has been a strong association between local recombination rate and nucleotide polymorphisms across the genome. This is interpreted as evidence for ubiquitous natural selection. The alternative explanation, that recombination is mutagenic, has been rejected by the absence of a similar association between local recombination rate and nucleotide divergence between species. However, many recent studies show that recombination rates are often very different even in closely related species, questioning whether an association between recombination rate and divergence between species has been tested satisfactorily. To circumvent this problem, we directly surveyed recombination across approximately 43% of the D. pseudoobscura physical genome in two separate recombination maps and 31% of the D. miranda physical genome, and we identified both global and local differences in recombination rate between these two closely related species. Using only regions with conserved recombination rates between and within species and accounting for multiple covariates, our data support the conclusion that recombination is positively related to diversity because recombination modulates Hill-Robertson effects in the genome and not because recombination is predominately mutagenic. Finally, we find evidence for dips in diversity around nonsynonymous substitutions. We infer that at least some of this reduction in diversity resulted from selective sweeps and examine these dips in the context of recombination rate.

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Published In

PLoS biology

DOI

EISSN

1545-7885

ISSN

1544-9173

Publication Date

January 2012

Volume

10

Issue

11

Start / End Page

e1001422

Related Subject Headings

  • Telomere
  • Species Specificity
  • Selection, Genetic
  • Recombination, Genetic
  • Linear Models
  • Genome, Insect
  • Genetics, Population
  • Genetic Variation
  • Genetic Linkage
  • Evolution, Molecular
 

Citation

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McGaugh, S. E., Heil, C. S. S., Manzano-Winkler, B., Loewe, L., Goldstein, S., Himmel, T. L., & Noor, M. A. F. (2012). Recombination modulates how selection affects linked sites in Drosophila. PLoS Biology, 10(11), e1001422. https://doi.org/10.1371/journal.pbio.1001422
McGaugh, Suzanne E., Caiti S. S. Heil, Brenda Manzano-Winkler, Laurence Loewe, Steve Goldstein, Tiffany L. Himmel, and Mohamed A. F. Noor. “Recombination modulates how selection affects linked sites in Drosophila.PLoS Biology 10, no. 11 (January 2012): e1001422. https://doi.org/10.1371/journal.pbio.1001422.
McGaugh SE, Heil CSS, Manzano-Winkler B, Loewe L, Goldstein S, Himmel TL, et al. Recombination modulates how selection affects linked sites in Drosophila. PLoS biology. 2012 Jan;10(11):e1001422.
McGaugh, Suzanne E., et al. “Recombination modulates how selection affects linked sites in Drosophila.PLoS Biology, vol. 10, no. 11, Jan. 2012, p. e1001422. Epmc, doi:10.1371/journal.pbio.1001422.
McGaugh SE, Heil CSS, Manzano-Winkler B, Loewe L, Goldstein S, Himmel TL, Noor MAF. Recombination modulates how selection affects linked sites in Drosophila. PLoS biology. 2012 Jan;10(11):e1001422.
Journal cover image

Published In

PLoS biology

DOI

EISSN

1545-7885

ISSN

1544-9173

Publication Date

January 2012

Volume

10

Issue

11

Start / End Page

e1001422

Related Subject Headings

  • Telomere
  • Species Specificity
  • Selection, Genetic
  • Recombination, Genetic
  • Linear Models
  • Genome, Insect
  • Genetics, Population
  • Genetic Variation
  • Genetic Linkage
  • Evolution, Molecular