Natural selection and the genetic differentiation of coastal and Arctic populations of the Atlantic cod in northern Norway: a test involving nucleotide sequence variation at the pantophysin (PanI) locus.
about
Adaptation to Low Salinity Promotes Genomic Divergence in Atlantic Cod (Gadus morhua L.)Fin whale MDH-1 and MPI allozyme variation is not reflected in the corresponding DNA sequencesHistorical DNA reveals the demographic history of Atlantic cod (Gadus morhua) in medieval and early modern IcelandProtein genes in repetitive sequence-antifreeze glycoproteins in Atlantic cod genome.Gene sampling strategies for multi-locus population estimates of genetic diversity (theta).Intense habitat-specific fisheries-induced selection at the molecular Pan I locus predicts imminent collapse of a major cod fishery.Integrating the markers Pan I and haemoglobin with the genetic linkage map of Atlantic cod (Gadus morhua)Multiple-locus, variable number of tandem repeat analysis (MLVA) of the fish-pathogen Francisella noatunensis.Mitochondrial cytochrome B DNA variation in the high-fecundity atlantic cod: trans-atlantic clines and shallow gene genealogy.Population genetic studies revealed local adaptation in a high gene-flow marine fish, the small yellow croaker (Larimichthys polyactis)Nucleotide variation and balancing selection at the Ckma gene in Atlantic cod: analysis with multiple merger coalescent models.Three chromosomal rearrangements promote genomic divergence between migratory and stationary ecotypes of Atlantic codAnalysing migrations of Atlantic cod Gadus morhua in the north-east Atlantic Ocean: then, now and the future.How to Determine the Geographical Origin of Seafood?Identification of single nucleotide polymorphisms in candidate genes for growth and reproduction in a nonmodel organism; the Atlantic cod, Gadus morhua.Intraspecific variation in expression of candidate genes for osmoregulation, heme biosynthesis and stress resistance suggests local adaptation in European flounder (Platichthys flesus).Parallel adaptive evolution of Atlantic cod on both sides of the Atlantic Ocean in response to temperature.Are low but statistically significant levels of genetic differentiation in marine fishes 'biologically meaningful'? A case study of coastal Atlantic cod.Population genetic analysis of Euro-Arctic polar cod Boreogadus saida suggests fjord and oceanic structuringTransport of North Sea cod larvae into the Skagerrak coastal populations.Genetic variation in life-history reaction norms in a marine fish.Analysis of coastal cod (Gadus morhua L.) sampled on spawning sites reveals a genetic gradient throughout Norway's coastline.Genetic structure and environmental heterogeneity in the European hake (Merluccius merluccius)Life-history variation among local populations of Atlantic cod from the Norwegian Skagerrak coastVariation in the copy number of tandem repeats of mitochondrial DNA in the North-East Atlantic cod populations
P2860
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P2860
Natural selection and the genetic differentiation of coastal and Arctic populations of the Atlantic cod in northern Norway: a test involving nucleotide sequence variation at the pantophysin (PanI) locus.
description
2003 nî lūn-bûn
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2003年の論文
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2003年学术文章
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2003年学术文章
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2003年学术文章
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2003年学术文章
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2003年学术文章
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name
Natural selection and the gene ...... the pantophysin (PanI) locus.
@en
Natural selection and the gene ...... e variation at the pantophysin
@nl
type
label
Natural selection and the gene ...... the pantophysin (PanI) locus.
@en
Natural selection and the gene ...... e variation at the pantophysin
@nl
prefLabel
Natural selection and the gene ...... the pantophysin (PanI) locus.
@en
Natural selection and the gene ...... e variation at the pantophysin
@nl
P1433
P1476
Natural selection and the gene ...... the pantophysin (PanI) locus.
@en
P2093
Grant H Pogson
P356
10.1046/J.1365-294X.2003.01713.X
P577
2003-01-01T00:00:00Z