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Journal Abstract Search
299 related items for PubMed ID: 24877663
1. Dietary methionine availability affects the main factors involved in muscle protein turnover in rainbow trout (Oncorhynchus mykiss). Belghit I, Skiba-Cassy S, Geurden I, Dias K, Surget A, Kaushik S, Panserat S, Seiliez I. Br J Nutr; 2014 Aug 28; 112(4):493-503. PubMed ID: 24877663 [Abstract] [Full Text] [Related]
2. Methionine deficiency does not increase polyamine turnover through depletion of hepatic S-adenosylmethionine in juvenile Atlantic salmon. Espe M, Andersen SM, Holen E, Rønnestad I, Veiseth-Kent E, Zerrahn JE, Aksnes A. Br J Nutr; 2014 Oct 28; 112(8):1274-85. PubMed ID: 25196630 [Abstract] [Full Text] [Related]
3. Methionine restriction affects the phenotypic and transcriptional response of rainbow trout (Oncorhynchus mykiss) to carbohydrate-enriched diets. Craig PM, Moon TW. Br J Nutr; 2013 Feb 14; 109(3):402-12. PubMed ID: 22583536 [Abstract] [Full Text] [Related]
4. Determination of relative protein degradation activity at different life stages in rainbow trout (Oncorhynchus mykiss). Overturf K, Gaylord TG. Comp Biochem Physiol B Biochem Mol Biol; 2009 Feb 14; 152(2):150-60. PubMed ID: 19038357 [Abstract] [Full Text] [Related]
5. Effects of sustained swimming on the red and white muscle transcriptome of rainbow trout (Oncorhynchus mykiss) fed a carbohydrate-rich diet. Magnoni LJ, Crespo D, Ibarz A, Blasco J, Fernández-Borràs J, Planas JV. Comp Biochem Physiol A Mol Integr Physiol; 2013 Nov 14; 166(3):510-21. PubMed ID: 23968867 [Abstract] [Full Text] [Related]
6. Early decrease in dietary protein:energy ratio by fat addition and ontogenetic changes in muscle growth mechanisms of rainbow trout: short- and long-term effects. Alami-Durante H, Cluzeaud M, Duval C, Maunas P, Girod-David V, Médale F. Br J Nutr; 2014 Sep 14; 112(5):674-87. PubMed ID: 24949706 [Abstract] [Full Text] [Related]
7. Effects of triploidy on growth and protein degradation in skeletal muscle during recovery from feed deprivation in juvenile rainbow trout (Oncorhynchus mykiss). Cleveland BM, Weber GM. Comp Biochem Physiol A Mol Integr Physiol; 2013 Sep 14; 166(1):128-37. PubMed ID: 23707888 [Abstract] [Full Text] [Related]
8. Skeletal muscle cellularity and expression of myogenic regulatory factors and myosin heavy chains in rainbow trout (Oncorhynchus mykiss): effects of changes in dietary plant protein sources and amino acid profiles. Alami-Durante H, Wrutniak-Cabello C, Kaushik SJ, Médale F. Comp Biochem Physiol A Mol Integr Physiol; 2010 Aug 14; 156(4):561-8. PubMed ID: 20434580 [Abstract] [Full Text] [Related]
9. Dietary methionine level affects growth performance and hepatic gene expression of GH-IGF system and protein turnover regulators in rainbow trout (Oncorhynchus mykiss) fed plant protein-based diets. Rolland M, Dalsgaard J, Holm J, Gómez-Requeni P, Skov PV. Comp Biochem Physiol B Biochem Mol Biol; 2015 Mar 14; 181():33-41. PubMed ID: 25479406 [Abstract] [Full Text] [Related]
10. Combined effects of diets and temperature on mitochondrial function, growth and nutrient efficiency in rainbow trout (Oncorhynchus mykiss). Eya JC, Yossa R, Perera D, Okubajo O, Gannam A. Comp Biochem Physiol B Biochem Mol Biol; 2017 Oct 14; 212():1-11. PubMed ID: 28687361 [Abstract] [Full Text] [Related]
12. Hepatic protein kinase B (Akt)-target of rapamycin (TOR)-signalling pathways and intermediary metabolism in rainbow trout (Oncorhynchus mykiss) are not significantly affected by feeding plant-based diets. Lansard M, Panserat S, Seiliez I, Polakof S, Plagnes-Juan E, Geurden I, Médale F, Kaushik S, Corraze G, Skiba-Cassy S. Br J Nutr; 2009 Dec 14; 102(11):1564-73. PubMed ID: 19664314 [Abstract] [Full Text] [Related]
13. Effect of acute and chronic insulin administrations on major factors involved in the control of muscle protein turnover in rainbow trout (Oncorhynchus mykiss). Seiliez I, Panserat S, Skiba-Cassy S, Polakof S. Gen Comp Endocrinol; 2011 Jul 01; 172(3):363-70. PubMed ID: 21463630 [Abstract] [Full Text] [Related]
14. Tracing metabolic routes of dietary carbohydrate and protein in rainbow trout (Oncorhynchus mykiss) using stable isotopes ([¹³C]starch and [¹⁵N]protein): effects of gelatinisation of starches and sustained swimming. Felip O, Ibarz A, Fernández-Borràs J, Beltrán M, Martín-Pérez M, Planas JV, Blasco J. Br J Nutr; 2012 Mar 01; 107(6):834-44. PubMed ID: 21806854 [Abstract] [Full Text] [Related]
15. An in vivo and in vitro assessment of autophagy-related gene expression in muscle of rainbow trout (Oncorhynchus mykiss). Seiliez I, Gutierrez J, Salmerón C, Skiba-Cassy S, Chauvin C, Dias K, Kaushik S, Tesseraud S, Panserat S. Comp Biochem Physiol B Biochem Mol Biol; 2010 Nov 01; 157(3):258-66. PubMed ID: 20601058 [Abstract] [Full Text] [Related]
16. Effects of crowding on the three main proteolytic mechanisms of skeletal muscle in rainbow trout (Oncorhynchus mykiss). Valenzuela CA, Ponce C, Zuloaga R, González P, Avendaño-Herrera R, Valdés JA, Molina A. BMC Vet Res; 2020 Aug 17; 16(1):294. PubMed ID: 32799856 [Abstract] [Full Text] [Related]
18. Dietary methionine deficiency affects oxidative status, mitochondrial integrity and mitophagy in the liver of rainbow trout (Oncorhynchus mykiss). Séité S, Mourier A, Camougrand N, Salin B, Figueiredo-Silva AC, Fontagné-Dicharry S, Panserat S, Seiliez I. Sci Rep; 2018 Jul 05; 8(1):10151. PubMed ID: 29977029 [Abstract] [Full Text] [Related]
19. Apparent low ability of liver and muscle to adapt to variation of dietary carbohydrate:protein ratio in rainbow trout (Oncorhynchus mykiss). Skiba-Cassy S, Panserat S, Larquier M, Dias K, Surget A, Plagnes-Juan E, Kaushik S, Seiliez I. Br J Nutr; 2013 Apr 28; 109(8):1359-72. PubMed ID: 22951215 [Abstract] [Full Text] [Related]
20. Rapid effects of essential fatty acid deficiency on growth and development parameters and transcription of key fatty acid metabolism genes in juvenile barramundi (Lates calcarifer). Salini MJ, Turchini GM, Wade NM, Glencross BD. Br J Nutr; 2015 Dec 14; 114(11):1784-96. PubMed ID: 26411329 [Abstract] [Full Text] [Related] Page: [Next] [New Search]