One of the factors that limits the replacement of fish meal (FM) and fish oil (FO) by plant ingredients in diets for marine fish, is their lack of long chain-polyunsaturated fatty acids (LC-PUFA). LC-PUFA are essential fatty acids for these fish species, which lack sufficient fatty acyl desaturase 2 (Fads2) activity to synthesize them. Nutritional programing or the use of broodstock with a higher Fads2 activity could improve marine fish ability to synthesize LC-PUFA and their ability to use low FM and FO diets. The aim of this study was to determine the effect of gilthead seabream broodstock with inherently high or inherently low fads2 gene expression and nutritional programing with broodstock diets rich in FO or rapeseed oil (RO) on the pr...
Genetic selection in gilthead seabream (GSB), Sparus aurata, has been undertaken to improve the grow...
The present study was conducted to evaluate the influences of different dietary fatty acid profiles ...
The limited activity of Δ6 fatty acid desaturase (FAD6) on α-linolenic (ALA, 18:3n-3) an...
Previous studies have shown that it is possible to nutritionally program gilthead seabream offspring...
Previous studies have shown that it is possible to increase the ability of marine fish to produce lo...
Environmental factors such as nutritional interventions during early developmental stages affect and...
The principle aim of this study is to elucidate the relationship between the fatty acid desaturase 2...
The concept of nutritional programming raises the interesting possibility of directing specific meta...
The Δ6 and Δ5 desaturases and elongases show only very limited activity in marine fish, and little i...
Polyunsaturated fatty acids (PUFA) in parental diets play a key role in regulating n-3 LC-PUFA metab...
The replacement of fish oil (FO) with vegetable oil (VO) in feed formulations reduces the availabili...
Polyunsaturated fatty acids (PUFA) in parental diets play a key role in regulating n-3 LC-PUFA metab...
To sustainably produce marine fish with a high lipid quality rich in omega-3 fatty acids, alternativ...
The feasibility of fish oil (FO) replacement by vegetable oils (VO) was investigated in gilthead sea...
The present work investigated how the combination of poultry oil with microalgae oils, rich in eicos...
Genetic selection in gilthead seabream (GSB), Sparus aurata, has been undertaken to improve the grow...
The present study was conducted to evaluate the influences of different dietary fatty acid profiles ...
The limited activity of Δ6 fatty acid desaturase (FAD6) on α-linolenic (ALA, 18:3n-3) an...
Previous studies have shown that it is possible to nutritionally program gilthead seabream offspring...
Previous studies have shown that it is possible to increase the ability of marine fish to produce lo...
Environmental factors such as nutritional interventions during early developmental stages affect and...
The principle aim of this study is to elucidate the relationship between the fatty acid desaturase 2...
The concept of nutritional programming raises the interesting possibility of directing specific meta...
The Δ6 and Δ5 desaturases and elongases show only very limited activity in marine fish, and little i...
Polyunsaturated fatty acids (PUFA) in parental diets play a key role in regulating n-3 LC-PUFA metab...
The replacement of fish oil (FO) with vegetable oil (VO) in feed formulations reduces the availabili...
Polyunsaturated fatty acids (PUFA) in parental diets play a key role in regulating n-3 LC-PUFA metab...
To sustainably produce marine fish with a high lipid quality rich in omega-3 fatty acids, alternativ...
The feasibility of fish oil (FO) replacement by vegetable oils (VO) was investigated in gilthead sea...
The present work investigated how the combination of poultry oil with microalgae oils, rich in eicos...
Genetic selection in gilthead seabream (GSB), Sparus aurata, has been undertaken to improve the grow...
The present study was conducted to evaluate the influences of different dietary fatty acid profiles ...
The limited activity of Δ6 fatty acid desaturase (FAD6) on α-linolenic (ALA, 18:3n-3) an...