| Literature DB >> 24138219 |
Ilaria Milano1, Massimiliano Babbucci, Alessia Cariani, Miroslava Atanassova, Dorte Bekkevold, Gary R Carvalho, Montserrat Espiñeira, Fabio Fiorentino, Germana Garofalo, Audrey J Geffen, Jakob H Hansen, Sarah J Helyar, Einar E Nielsen, Rob Ogden, Tomaso Patarnello, Marco Stagioni, Fausto Tinti, Luca Bargelloni.
Abstract
Shallow population structure is generally reported for most marine fish and explained as a consequence of high dispersal, connectivity and large population size. Targeted gene analyses and more recently genome-wide studies have challenged such view, suggesting that adaptive divergence might occur even when neutral markers provide genetic homogeneity across populations. Here, 381 SNPs located in transcribed regions were used to assess large- and fine-scale population structure in the European hake (Merluccius merluccius), a widely distributed demersal species of high priority for the European fishery. Analysis of 850 individuals from 19 locations across the entire distribution range showed evidence for several outlier loci, with significantly higher resolving power. While 299 putatively neutral SNPs confirmed the genetic break between basins (F(CT) = 0.016) and weak differentiation within basins, outlier loci revealed a dramatic divergence between Atlantic and Mediterranean populations (F(CT) range 0.275-0.705) and fine-scale significant population structure. Outlier loci separated North Sea and Northern Portugal populations from all other Atlantic samples and revealed a strong differentiation among Western, Central and Eastern Mediterranean geographical samples. Significant correlation of allele frequencies at outlier loci with seawater surface temperature and salinity supported the hypothesis that populations might be adapted to local conditions. Such evidence highlights the importance of integrating information from neutral and adaptive evolutionary patterns towards a better assessment of genetic diversity. Accordingly, the generated outlier SNP data could be used for tackling illegal practices in hake fishing and commercialization as well as to develop explicit spatial models for defining management units and stock boundaries.Entities:
Keywords: environmental correlation; genome scan; local adaptation; outlier SNPs; salinity; temperature
Mesh:
Year: 2013 PMID: 24138219 DOI: 10.1111/mec.12568
Source DB: PubMed Journal: Mol Ecol ISSN: 0962-1083 Impact factor: 6.185