Characteristics, lipogenic enzyme activity, and fatty acid composition of muscles in the Iberian pig: Effects of protein restriction and free-range feeding
暂无分享,去创建一个
[1] R. Charneca,et al. Physical Activity Effects on Blood Parameters, Growth, Carcass, and Meat and Fat Composition of Portuguese Alentejano Pigs , 2021, Animals : an open access journal from MDPI.
[2] J. F. Tejeda,et al. Free-Range and Low-Protein Concentrated Diets in Iberian Pigs: Effect on Plasma Insulin and Leptin Concentration, Lipogenic Enzyme Activity, and Fatty Acid Composition of Adipose Tissue , 2020, Animals : an open access journal from MDPI.
[3] J. F. Tejeda,et al. Effect of Free-Range and Low-Protein Concentrated Diets on Growth Performance, Carcass Traits, and Meat Composition of Iberian Pig , 2020, Animals : an open access journal from MDPI.
[4] C. Óvilo,et al. Effects of lysine deficiency on carcass composition and activity and gene expression of lipogenic enzymes in muscles and backfat adipose tissue of fatty and lean piglets. , 2019, Animal : an international journal of animal bioscience.
[5] G. Wang,et al. Advances in low-protein diets for swine , 2018, Journal of Animal Science and Biotechnology.
[6] Y. Duan,et al. Low-protein diet improves meat quality of growing and finishing pigs through changing lipid metabolism, fiber characteristics, and free amino acid profile of the muscle. , 2018, Journal of animal science.
[7] Y. Duan,et al. Reduced dietary protein level influences the free amino acid and gene expression profiles of selected amino acid transceptors in skeletal muscle of growing pigs , 2017, Journal of animal physiology and animal nutrition.
[8] J. Suárez-Belloch,et al. The effect of protein restriction during the growing period on carcass, meat and fat quality of heavy barrows and gilts. , 2016, Meat science.
[9] M. Gispert,et al. Effect of reducing dietary protein and lysine on growth performance, carcass characteristics, intramuscular fat, and fatty acid profile of finishing barrows. , 2014, Journal of animal science.
[10] R. Zijlstra,et al. Expression of cationic amino acid transporters, carcass traits, and performance of growing pigs fed low-protein amino acid-supplemented versus high protein diets. , 2013, Genetics and molecular research : GMR.
[11] Xiangfang Zeng,et al. Supplementation with branched-chain amino acids to a low-protein diet regulates intestinal expression of amino acid and peptide transporters in weanling pigs , 2013, Amino Acids.
[12] J. Prates,et al. The increased intramuscular fat promoted by dietary lysine restriction in lean but not in fatty pig genotypes improves pork sensory attributes. , 2013, Journal of animal science.
[13] J. Aguilera,et al. Response analysis of the Iberian pig growing from birth to 150 kg body weight to changes in protein and energy supply. , 2012, Journal of animal science.
[14] V. Rodríguez-Estévez,et al. Feed conversion rate and estimated energy balance of free grazing Iberian pigs , 2010 .
[15] C. Pugliese,et al. Effect of Dietary Protein Level (as Substitution of Maize with Soybean Meal) on Growth Rate and Feed Efficiency of Cinta Senese Pig in the Growing-Fattening Period , 2010 .
[16] Guoyao Wu,et al. Impaired translation initiation activation and reduced protein synthesis in weaned piglets fed a low-protein diet. , 2009, The Journal of nutritional biochemistry.
[17] S. Smet,et al. Effect of sire and sex on the intramuscular fatty acid profile and indices for enzyme activities in pigs , 2009 .
[18] F. Toldrá,et al. Physical activity-induced alterations on tissue lipid composition and lipid metabolism in fattening pigs. , 2009, Meat science.
[19] J. S. Radcliffe,et al. Effect of feeding reduced crude protein and phosphorus diets on weaning-finishing pig growth performance, carcass characteristics, and bone characteristics. , 2009, Journal of Animal Science.
[20] B. Lebret. Effects of feeding and rearing systems on growth, carcass composition and meat quality in pigs. , 2008, Animal : an international journal of animal bioscience.
[21] F. Toldrá,et al. Effect of exercise on skeletal muscle proteolytic enzyme activity and meat quality characteristics in Iberian pigs. , 2008, Meat science.
[22] A. Fisher,et al. Fat deposition, fatty acid composition and meat quality: A review. , 2008, Meat science.
[23] J. Aguilera,et al. Effects of herbage ingestion on the digestion site and nitrogen balance in heavy Iberian pigs fed on an acorn-based diet , 2007 .
[24] M. Rivera-Ferre,et al. Serum profile of metabolites and hormones in obese (Iberian) and lean (Landrace) growing gilts fed balanced or lysine deficient diets , 2007 .
[25] M. Ruusunen,et al. The effect of dietary protein supply on carcass composition, size of organs, muscle properties and meat quality of pigs , 2007 .
[26] J. Aguilera,et al. Effects of the dietary protein content and the feeding level on protein and energy metabolism in Iberian pigs growing from 50 to 100 kg body weight. , 2007, Animal : an international journal of animal bioscience.
[27] A. Rey,et al. Feeding Iberian pigs with acorns and grass in either free-range or confinement affects the carcass characteristics and fatty acids and tocopherols accumulation in Longissimus dorsi muscle and backfat. , 2006, Meat science.
[28] G. Teye,et al. Influence of dietary oils and protein level on pork quality. 1. Effects on muscle fatty acid composition, carcass, meat and eating quality. , 2006, Meat science.
[29] S. Moule,et al. A reduced protein diet induces stearoyl-CoA desaturase protein expression in pig muscle but not in subcutaneous adipose tissue: relationship with intramuscular lipid formation , 2006, British Journal of Nutrition.
[30] M. Krempf,et al. Consumption of resistant starch decreases lipogenesis in adipose tissues but not in muscular tissues of growing pigs , 2006 .
[31] J. Ventanas,et al. Iberian pigs for the development of high-quality cured products. , 2005 .
[32] T. Antequera,et al. Improvement of a solid phase extraction method for analysis of lipid fractions in muscle foods , 2004 .
[33] J. Wood,et al. Effects of breed, diet and muscle on fat deposition and eating quality in pigs. , 2004, Meat science.
[34] D. Spiegelman,et al. Factors influencing serum cystatin C levels other than renal function and the impact on renal function measurement. , 2004, Kidney international.
[35] A. Arana,et al. Lipogenic enzyme activities in different adipose depots of Pirenaican and Holstein bulls and heifers taking into account adipocyte size. , 2003, Journal of animal science.
[36] B. Lebret,et al. Feeding intensity and dietary protein level affect adipocyte cellularity and lipogenic capacity of muscle homogenates in growing pigs, without modification of the expression of sterol regulatory element binding protein. , 2002, Journal of animal science.
[37] J. Dourmad,et al. Protein (lysine) restriction in primiparous lactating sows: effects on metabolic state, somatotropic axis, and reproductive performance after weaning. , 2002, Journal of animal science.
[38] A. Lewis,et al. Nitrogen metabolism and growth performance of gilts fed standard corn-soybean meal diets or low-crude protein, amino acid-supplemented diets. , 2002, Journal of animal science.
[39] M. Miller,et al. Impact of spontaneous exercise on performance, meat quality, and muscle fiber characteristics of growing/finishing pigs. , 2002, Journal of animal science.
[40] T. Antequera,et al. Lipid traits of muscles as related to genotype and fattening diet in Iberian pigs: total intramuscular lipids and triacylglycerols. , 2002, Meat science.
[41] E. Huff-Lonergan,et al. Effect of dietary restrictions on growth performance and carcass quality of pigs selected for lean growth efficiency , 2002 .
[42] J. Aguilera,et al. The effect of dietary protein content and feeding level on the rate of protein deposition and energy utilization in growing Iberian pigs from 15 to 50kg body weight , 2002 .
[43] G. Shurson,et al. Effects of dietary lysine intake during lactation on blood metabolites, hormones, and reproductive performance in primiparous sows. , 2000, Journal of animal science.
[44] J. Le Dividich,et al. Lipogenic enzyme activities in subcutaneous adipose tissue and skeletal muscle from neonatal pigs consuming maternal or formula milk. , 2000, Reproduction, nutrition, development.
[45] J. Mourot,et al. Lipogenic enzyme activities in muscles of growing Large White and Meishan pigs , 1998 .
[46] M. Bonneau,et al. COMPARISON OF INTRAMUSCULAR ADIPOSE TISSUE CELLULARITY IN MUSCLES DIFFERING IN THEIR LIPID CONTENT AND FIBRE TYPE COMPOSITION DURING RABBIT GROWTH , 1998 .
[47] C. López-Bote. Sustained utilization of the Iberian pig breed. , 1998, Meat science.
[48] T. Antequera,et al. Influence of finishing diet on fatty acid profiles of intramuscular lipids, triglycerides and phospholipids in muscles of the Iberian pig. , 1997, Meat science.
[49] A. Karlsson,et al. Intramuscular fat and muscle fibre lipid contents in halothane-gene-free pigs fed high or low protein diets and its relation to meat quality. , 1994, Meat science.
[50] D. Rassin,et al. CHAPTER 6 – Evaluation of Protein Status in Humans , 1992 .
[51] J. O. Reagan,et al. Determination of the alteration in fatty acid profiles, sensory characteristics and carcass traits of swine fed elevated levels of monounsaturated fats in the diet. , 1990, Journal of animal science.
[52] L. Rakes,et al. Effect of exercise and pre-slaughter stress on pork muscle characteristics. , 1989, Meat science.
[53] P. Vaugelade,et al. Absorption kinetics of dietary hydrolysis products in conscious pigs given diets with different amounts of fish protein , 1988, British Journal of Nutrition.
[54] B. Séve,et al. Effects of the amount and quality of dietary protein on nitrogen metabolism and protein turnover of pigs , 1987, British Journal of Nutrition.
[55] F. Shahidi,et al. Meat flavor volatiles: a review of the composition, techniques of analysis, and sensory evaluation. , 1986, Critical reviews in food science and nutrition.
[56] R. Unger. Alpha- and beta-cell interrelationships in health and disease. , 1974, Metabolism: clinical and experimental.
[57] C. Allen,et al. Cellularity of bovine adipose tissue. , 1973, Journal of lipid research.
[58] W. J. Dyer,et al. A rapid method of total lipid extraction and purification. , 1959, Canadian journal of biochemistry and physiology.
[59] S. Ochoa. [124] “Malic”-enzyme , 1955 .
[60] P. Mclean,et al. Further studies on the properties and assay of glucose 6-phosphate dehydrogenase and 6-phosphogluconate dehydrogenase of rat liver. , 1953, The Biochemical journal.