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Considering reefscape configuration and composition in biophysical models advance seascape genetics.


ABSTRACT: Previous seascape genetics studies have emphasized the role of ocean currents and geographic distances to explain the genetic structure of marine species, but the role of benthic habitat has been more rarely considered. Here, we compared the population genetic structure observed in West Pacific giant clam populations against model simulations that accounted habitat composition and configuration, geographical distance, and oceanic currents. Dispersal determined by geographical distance provided a modelled genetic structure in better agreement with the observations than dispersal by oceanic currents, possibly due to insufficient spatial resolution of available oceanographic and coastal circulation models. Considering both habitat composition and configuration significantly improved the match between simulated and observed genetic structures. This study emphasizes the importance of a reefscape genetics approach to population ecology, evolution and conservation in the sea.

SUBMITTER: Van Wynsberge S 

PROVIDER: S-EPMC5444781 | biostudies-literature | 2017

REPOSITORIES: biostudies-literature

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Considering reefscape configuration and composition in biophysical models advance seascape genetics.

Van Wynsberge Simon S   Andréfouët Serge S   Gaertner-Mazouni Nabila N   Tiavouane Josina J   Grulois Daphné D   Lefèvre Jérôme J   Pinsky Malin L ML   Fauvelot Cécile C  

PloS one 20170525 5


Previous seascape genetics studies have emphasized the role of ocean currents and geographic distances to explain the genetic structure of marine species, but the role of benthic habitat has been more rarely considered. Here, we compared the population genetic structure observed in West Pacific giant clam populations against model simulations that accounted habitat composition and configuration, geographical distance, and oceanic currents. Dispersal determined by geographical distance provided a  ...[more]

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