The geographic mosaic of sex and the Red Queen.

Symplectic ID
383207
Source
PubMed
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1
Last Synced with Symplectic
Sunday, 19 July, 2026 - 05:36
DOI
10.1016/j.cub.2009.06.062
Publication Date
Tuesday, 15 September, 2009
First Page
1438
Last Page
1441
Keywords
Adaptation, Physiological
Animals
Biological Evolution
Ducks
Feeding Behavior
Female
Geography
Host-Parasite Interactions
Male
Reproduction, Asexual
Snails
Trematoda
Authors
King, KC
Delph, LF
Jokela, J
Lively, CM
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0
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Abstract
The maintenance of sexual reproduction in natural populations is a pressing question for evolutionary biologists. Under the \"Red Queen\" hypothesis, coevolving parasites reduce the reproductive advantage of asexual reproduction by adapting to infect clonal genotypes after they become locally common. In addition, the \"geographic mosaic\" theory of coevolution proposes that structured populations of interacting species can produce selection mosaics manifested as coevolutionary \"hot spots\" and \"cold spots\". Here, we tested whether a steep, habitat-specific cline in the frequency of sexual reproduction in a freshwater snail could be explained by the existence of hot spots and cold spots for coevolving parasites. We found that the shallow-water margins of lakes, where sexual reproduction is most common, are coevolutionary hot spots, and that deeper habitats are cold spots. These results are consistent with the geographic mosaic theory, in that the intensity of selection resulting from biological interactions can vary sharply in space. The results also support the Red Queen hypothesis, in that sex is associated with coevolutionary hot spots for virulent parasites.
Journal Title
Curr Biol
eISSN
1879-0445
Volume
19
Issue
17
ID at Source
19631541
Publication Status
Published
Open access
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