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Population genetic structure in a deepwater fish Coryphaenoides rupestris: patterns and processes

Authors :
Odd Aksel Bergstad
Halvor Knutsen
Per Erik Jorde
Morten D. Skogen
Source :
Marine Ecology Progress Series
Publication Year :
2012
Publisher :
Inter-Research Science Center, 2012.

Abstract

We observed significant genetic structure in a widely distributed North Atlantic demersal deepwater fish, the roundnose grenadier Coryphaenoides rupestris (Pisces: Macro - uridae). The overall estimate of genetic differentiation, based on 6 microsatellite loci (FST = 0.0152; p < 0.0001), was elevated by samples from the periphery of the species’ range, off Norway and Canada. Samples from the central area of distribution showed less pronounced genetic structure, indicating more extensive dispersal and gene flow. Simulations were run to assess expected patterns of genetic differentiation under 2 major hypotheses of gene flow: passive larval drift and demographic diffusion. In spite of the relatively long duration of the pelagic egg and juvenile phases, no correlation was found between observed pairwise FST values and those predicted under the hypothesis of drift of progeny by ocean currents. The observed pattern may instead arise from a combination of bathymetric barriers limiting deep pelagic mixing and advection, early life ontogenetic changes in vertical distribution, and limited migration once a benthopelagic life style has been established. 2017-07-24

Details

ISSN :
16161599 and 01718630
Volume :
460
Database :
OpenAIRE
Journal :
Marine Ecology Progress Series
Accession number :
edsair.doi.dedup.....c7868a202e730b87afdd7c3aa02c9543
Full Text :
https://doi.org/10.3354/meps09728