author_facet Mavreas, C.M.
Le François, N.R.
Tveiten, H.
Blier, P.U.
Mavreas, C.M.
Le François, N.R.
Tveiten, H.
Blier, P.U.
author Mavreas, C.M.
Le François, N.R.
Tveiten, H.
Blier, P.U.
spellingShingle Mavreas, C.M.
Le François, N.R.
Tveiten, H.
Blier, P.U.
The Open Fish Science Journal
Evaluation of the Physiological Relationship Between Oxidative Stress and Metabolic Characters: Insights From Hybridization Between Anarhichas minor × A. lupus
author_sort mavreas, c.m.
spelling Mavreas, C.M. Le François, N.R. Tveiten, H. Blier, P.U. 1874-401X Bentham Science Publishers Ltd. http://dx.doi.org/10.2174/1874401x01306010107 <jats:p>Physiological indicators such as lipid peroxidation and enzymes involved in aerobic/anaerobic energy metabolism were measured in pure and hybrid lines of wolffish juveniles (<jats:italic>Anarhichas minor</jats:italic>, ♀ <jats:italic>A. minor</jats:italic> ⨯ ♀ <jats:italic>A. lupus</jats:italic>). Interspecific hybridization was introduced as a powerful tool to promote augmentation of phenotypic variability and consequently improve our capacity for the detection of clear physiological relationships amongst oxidative stress and metabolic characters. Mitochondrial sequence genes analysis between the Atlantic (<jats:italic>A. lupus</jats:italic>) and spotted wolffish (<jats:italic>A. minor</jats:italic>) were later performed to further assess the extent of divergence between A. lupus and A. minor mitochondrial haplotypes. The observed divergences (2.0% and the number of nonsynonymous substitution n=23) do not seem to be sufficient to generate detectable differences in ETS complexes catalytic capacities. Total LDH activity was however higher in hybrids than in the pure strands and tightly correlated to TBARS levels which suggest that LDH actively participates to the regulation of cellular redox status. Our results are discussed in comparison with a similar study on a charr hybrid (<jats:italic>Salvelinus alpinus</jats:italic> × <jats:italic>S. fontinalis</jats:italic>).</jats:p> Evaluation of the Physiological Relationship Between Oxidative Stress and Metabolic Characters: Insights From Hybridization Between Anarhichas minor × A. lupus The Open Fish Science Journal
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title Evaluation of the Physiological Relationship Between Oxidative Stress and Metabolic Characters: Insights From Hybridization Between Anarhichas minor × A. lupus
title_unstemmed Evaluation of the Physiological Relationship Between Oxidative Stress and Metabolic Characters: Insights From Hybridization Between Anarhichas minor × A. lupus
title_full Evaluation of the Physiological Relationship Between Oxidative Stress and Metabolic Characters: Insights From Hybridization Between Anarhichas minor × A. lupus
title_fullStr Evaluation of the Physiological Relationship Between Oxidative Stress and Metabolic Characters: Insights From Hybridization Between Anarhichas minor × A. lupus
title_full_unstemmed Evaluation of the Physiological Relationship Between Oxidative Stress and Metabolic Characters: Insights From Hybridization Between Anarhichas minor × A. lupus
title_short Evaluation of the Physiological Relationship Between Oxidative Stress and Metabolic Characters: Insights From Hybridization Between Anarhichas minor × A. lupus
title_sort evaluation of the physiological relationship between oxidative stress and metabolic characters: insights from hybridization between anarhichas minor × a. lupus
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publishDate 2013
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description <jats:p>Physiological indicators such as lipid peroxidation and enzymes involved in aerobic/anaerobic energy metabolism were measured in pure and hybrid lines of wolffish juveniles (<jats:italic>Anarhichas minor</jats:italic>, ♀ <jats:italic>A. minor</jats:italic> ⨯ ♀ <jats:italic>A. lupus</jats:italic>). Interspecific hybridization was introduced as a powerful tool to promote augmentation of phenotypic variability and consequently improve our capacity for the detection of clear physiological relationships amongst oxidative stress and metabolic characters. Mitochondrial sequence genes analysis between the Atlantic (<jats:italic>A. lupus</jats:italic>) and spotted wolffish (<jats:italic>A. minor</jats:italic>) were later performed to further assess the extent of divergence between A. lupus and A. minor mitochondrial haplotypes. The observed divergences (2.0% and the number of nonsynonymous substitution n=23) do not seem to be sufficient to generate detectable differences in ETS complexes catalytic capacities. Total LDH activity was however higher in hybrids than in the pure strands and tightly correlated to TBARS levels which suggest that LDH actively participates to the regulation of cellular redox status. Our results are discussed in comparison with a similar study on a charr hybrid (<jats:italic>Salvelinus alpinus</jats:italic> × <jats:italic>S. fontinalis</jats:italic>).</jats:p>
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author Mavreas, C.M., Le François, N.R., Tveiten, H., Blier, P.U.
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description <jats:p>Physiological indicators such as lipid peroxidation and enzymes involved in aerobic/anaerobic energy metabolism were measured in pure and hybrid lines of wolffish juveniles (<jats:italic>Anarhichas minor</jats:italic>, ♀ <jats:italic>A. minor</jats:italic> ⨯ ♀ <jats:italic>A. lupus</jats:italic>). Interspecific hybridization was introduced as a powerful tool to promote augmentation of phenotypic variability and consequently improve our capacity for the detection of clear physiological relationships amongst oxidative stress and metabolic characters. Mitochondrial sequence genes analysis between the Atlantic (<jats:italic>A. lupus</jats:italic>) and spotted wolffish (<jats:italic>A. minor</jats:italic>) were later performed to further assess the extent of divergence between A. lupus and A. minor mitochondrial haplotypes. The observed divergences (2.0% and the number of nonsynonymous substitution n=23) do not seem to be sufficient to generate detectable differences in ETS complexes catalytic capacities. Total LDH activity was however higher in hybrids than in the pure strands and tightly correlated to TBARS levels which suggest that LDH actively participates to the regulation of cellular redox status. Our results are discussed in comparison with a similar study on a charr hybrid (<jats:italic>Salvelinus alpinus</jats:italic> × <jats:italic>S. fontinalis</jats:italic>).</jats:p>
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spelling Mavreas, C.M. Le François, N.R. Tveiten, H. Blier, P.U. 1874-401X Bentham Science Publishers Ltd. http://dx.doi.org/10.2174/1874401x01306010107 <jats:p>Physiological indicators such as lipid peroxidation and enzymes involved in aerobic/anaerobic energy metabolism were measured in pure and hybrid lines of wolffish juveniles (<jats:italic>Anarhichas minor</jats:italic>, ♀ <jats:italic>A. minor</jats:italic> ⨯ ♀ <jats:italic>A. lupus</jats:italic>). Interspecific hybridization was introduced as a powerful tool to promote augmentation of phenotypic variability and consequently improve our capacity for the detection of clear physiological relationships amongst oxidative stress and metabolic characters. Mitochondrial sequence genes analysis between the Atlantic (<jats:italic>A. lupus</jats:italic>) and spotted wolffish (<jats:italic>A. minor</jats:italic>) were later performed to further assess the extent of divergence between A. lupus and A. minor mitochondrial haplotypes. The observed divergences (2.0% and the number of nonsynonymous substitution n=23) do not seem to be sufficient to generate detectable differences in ETS complexes catalytic capacities. Total LDH activity was however higher in hybrids than in the pure strands and tightly correlated to TBARS levels which suggest that LDH actively participates to the regulation of cellular redox status. Our results are discussed in comparison with a similar study on a charr hybrid (<jats:italic>Salvelinus alpinus</jats:italic> × <jats:italic>S. fontinalis</jats:italic>).</jats:p> Evaluation of the Physiological Relationship Between Oxidative Stress and Metabolic Characters: Insights From Hybridization Between Anarhichas minor × A. lupus The Open Fish Science Journal
spellingShingle Mavreas, C.M., Le François, N.R., Tveiten, H., Blier, P.U., The Open Fish Science Journal, Evaluation of the Physiological Relationship Between Oxidative Stress and Metabolic Characters: Insights From Hybridization Between Anarhichas minor × A. lupus
title Evaluation of the Physiological Relationship Between Oxidative Stress and Metabolic Characters: Insights From Hybridization Between Anarhichas minor × A. lupus
title_full Evaluation of the Physiological Relationship Between Oxidative Stress and Metabolic Characters: Insights From Hybridization Between Anarhichas minor × A. lupus
title_fullStr Evaluation of the Physiological Relationship Between Oxidative Stress and Metabolic Characters: Insights From Hybridization Between Anarhichas minor × A. lupus
title_full_unstemmed Evaluation of the Physiological Relationship Between Oxidative Stress and Metabolic Characters: Insights From Hybridization Between Anarhichas minor × A. lupus
title_short Evaluation of the Physiological Relationship Between Oxidative Stress and Metabolic Characters: Insights From Hybridization Between Anarhichas minor × A. lupus
title_sort evaluation of the physiological relationship between oxidative stress and metabolic characters: insights from hybridization between anarhichas minor × a. lupus
title_unstemmed Evaluation of the Physiological Relationship Between Oxidative Stress and Metabolic Characters: Insights From Hybridization Between Anarhichas minor × A. lupus
url http://dx.doi.org/10.2174/1874401x01306010107