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Negative frequency-dependent selection is intensified at higher population densities in protist populations.


ABSTRACT: Natural populations of free-living protists often exhibit high-levels of intraspecific diversity, yet this is puzzling as classic evolutionary theory predicts dominance by genotypes with high fitness, particularly in large populations where selection is efficient. Here, we test whether negative frequency-dependent selection (NFDS) plays a role in the maintenance of diversity in the marine flagellate Oxyrrhis marina using competition experiments between multiple pairs of strains. We observed strain-specific responses to frequency and density, but an overall signature of NFDS that was intensified at higher population densities. Because our strains were not selected a priori on the basis of particular traits expected to exhibit NFDS, these data represent a relatively unbiased estimate of the role for NFDS in maintaining diversity in protist populations. These findings could help to explain how bloom-forming plankton, which periodically achieve exceptionally high population densities, maintain substantial intraspecific diversity.

SUBMITTER: Minter EJ 

PROVIDER: S-EPMC4528467 | biostudies-literature | 2015 Jun

REPOSITORIES: biostudies-literature

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Negative frequency-dependent selection is intensified at higher population densities in protist populations.

Minter Ewan J A EJ   Watts Phillip C PC   Lowe Chris D CD   Brockhurst Michael A MA  

Biology letters 20150601 6


Natural populations of free-living protists often exhibit high-levels of intraspecific diversity, yet this is puzzling as classic evolutionary theory predicts dominance by genotypes with high fitness, particularly in large populations where selection is efficient. Here, we test whether negative frequency-dependent selection (NFDS) plays a role in the maintenance of diversity in the marine flagellate Oxyrrhis marina using competition experiments between multiple pairs of strains. We observed stra  ...[more]

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