Genetic markers are widely used in fisheries management around the world. While the genetic structure and markers selected are usually based on samples from the wild, very few controlled experiments have been carried out to investigate possible differences in influence on traits between markers. Here we examine the bi-allelic gene pantophysin (Pan I), widely used in the management of Atlantic cod, in a series of in vitro crosses under a range of temperatures. It has been proposed that this gene, or another tightly linked gene, may be under strong divergent selection. Resolving this issue is essential in order to interpret results when using this gene marker for stock management. We found no evidence of departure from the expected 1 : 2 : 1 ...
We employed common-garden experiments to test for genetic variation in larval life-history trait res...
Background The Atlantic cod (Gadus morhua) is a groundfish of great economic value in fisheries and ...
Article published in Animal Genetics, 41 (5): 515-522 OCT 2010This study presents a molecular geneti...
Genetic markers are widely used in fisheries management around the world. While the genetic structur...
Genetic markers are widely used in fisheries management around the world. While the genetic structur...
Genetic markers are widely used in fisheries management around the world. While the genetic structur...
Studies of the pantophysin (Pan I*) locus in Atlantic cod Gadus morhua and other marine gadoids indi...
We investigated the effects of development: temperature and pantophysin (PanI) genotype on muscle fi...
The pantophysin (Pan I) locus reveals differences between Norwegian coastal cod (NCC) and Northeast ...
The pantophysin (Pan I) locus reveals differences between Norwegian coastal cod (NCC) and Northeast ...
The investigation was carried out in a marine pond in western Norway during spring and summer 1990. ...
Background: The Atlantic cod (Gadus morhua) is a groundfish of great economic value in fisheries and...
The investigation was carried out in a marine pond in western Norway during spring and summer 1990....
This study examines genetic variation at five microsatellite loci and at the vesicle membrane protei...
We employed common-garden experiments to test for genetic variation in larval life-history trait res...
We employed common-garden experiments to test for genetic variation in larval life-history trait res...
Background The Atlantic cod (Gadus morhua) is a groundfish of great economic value in fisheries and ...
Article published in Animal Genetics, 41 (5): 515-522 OCT 2010This study presents a molecular geneti...
Genetic markers are widely used in fisheries management around the world. While the genetic structur...
Genetic markers are widely used in fisheries management around the world. While the genetic structur...
Genetic markers are widely used in fisheries management around the world. While the genetic structur...
Studies of the pantophysin (Pan I*) locus in Atlantic cod Gadus morhua and other marine gadoids indi...
We investigated the effects of development: temperature and pantophysin (PanI) genotype on muscle fi...
The pantophysin (Pan I) locus reveals differences between Norwegian coastal cod (NCC) and Northeast ...
The pantophysin (Pan I) locus reveals differences between Norwegian coastal cod (NCC) and Northeast ...
The investigation was carried out in a marine pond in western Norway during spring and summer 1990. ...
Background: The Atlantic cod (Gadus morhua) is a groundfish of great economic value in fisheries and...
The investigation was carried out in a marine pond in western Norway during spring and summer 1990....
This study examines genetic variation at five microsatellite loci and at the vesicle membrane protei...
We employed common-garden experiments to test for genetic variation in larval life-history trait res...
We employed common-garden experiments to test for genetic variation in larval life-history trait res...
Background The Atlantic cod (Gadus morhua) is a groundfish of great economic value in fisheries and ...
Article published in Animal Genetics, 41 (5): 515-522 OCT 2010This study presents a molecular geneti...