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Nonparadoxical evolutionary stability of the recombination initiation landscape in yeast.


ABSTRACT: The nonrandom distribution of meiotic recombination shapes heredity and genetic diversification. Theoretically, hotspots--favored sites of recombination initiation--either evolve rapidly toward extinction or are conserved, especially if they are chromosomal features under selective constraint, such as promoters. We tested these theories by comparing genome-wide recombination initiation maps from widely divergent Saccharomyces species. We find that hotspots frequently overlap with promoters in the species tested, and consequently, hotspot positions are well conserved. Remarkably, the relative strength of individual hotspots is also highly conserved, as are larger-scale features of the distribution of recombination initiation. This stability, not predicted by prior models, suggests that the

SUBMITTER: Lam I 

PROVIDER: S-EPMC4656144 | biostudies-literature | 2015 Nov

REPOSITORIES: biostudies-literature

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