De l’énergie de la ration à l’utilisation des nutriments chez les ruminants : quel rôle pour les tissus splanchniques ?

Cahiers de Nutrition et de Dietetique - Tập 52 - Trang 45-53 - 2017
Isabelle Ortigues-Marty1, Gonzalo Cantalapiedra-Hijar1, Jean Vernet1, Pierre Nozière1
1UMR Herbivores, Inra, Vetagro Sup, 63122 Saint-Genès-Champanelle, France

Tài liệu tham khảo

Reynolds, 2002, Economics of visceral energy metabolism in ruminants: toll keeping or internal revenue service?, J Anim Sci, 80, E74, 10.2527/animalsci2002.80E-Suppl_2E74x Sauvant, 2016, Quantification of the main digestive processes in ruminants: the equations involved in the renewed energy and protein feed evaluation systems, Anim, 10, 755, 10.1017/S1751731115002670 Chapoutot, 2015, Systool Web, a new one-line application for the French INRA “Systali” project, 265 Nozière, 2016, Evaluation of the INRA Systali digestive model through measured net portal appearance of nutrients in ruminants, 133 Loncke, 2009, From metabolisable energy to energy of absorbed nutrients: quantitative comparison of models, 233 Mc Lean, 1986, The significance of carbon dioxide and methane measurements in the estimation of heat production in cattle, Br J Nutr, 55, 631, 10.1079/BJN19860068 Drackley, 2006, Major advances in fundamental dairy cattle nutrition, J Dairy Sci, 89, 1324, 10.3168/jds.S0022-0302(06)72200-7 Ortigues-Marty, 2013, Des rations de ruminants aux nutriments transférés par le foie et fournis aux tissus périphériques, Renc Rech Ruminants, 20, 57 Han, 2002, Effects of nutrient supply and dietary bulk on O2 uptake and nutrient net fluxes across rumen, mesenteric- and portal-drained viscera in ewes, J Anim Sci, 80, 1362, 10.2527/2002.8051362x Ortigues, 1995, Adaptation of energy metabolism to undernutrition in ewes. Contribution of portal-drained viscera, liver and hindquarters, Br J Nutr, 73, 209, 10.1079/BJN19950024 Ortigues, 1995, Circadian changes in energy expenditure in the preruminant calf: whole animal and tissue level, J Anim Sci, 73, 552, 10.2527/1995.732552x Bauchart, 1996, Energy and fat metabolism of the liver, the digestive tract and muscles: transport, processing, energy consumption, fixation by tissues, 255 Ortigues, 1995, Responses of the splanchnic tissues of ruminants to changes in feeding level: absorption of digestion end-products, tissue mass, metabolic activity and implications to whole animal energy metabolism, Ann Zootech, 44, 321, 10.1051/animres:19950401 Summers, 1988, Components of basal energy expenditure, 257 Lobley, 1991, Organ and tissue metabolism: present status and future trends, 80 Burrin, 1989, Effect of level of nutrition on splanchnic blood flow and oxygen consumption in sheep, Br J Nutr, 62, 23, 10.1079/BJN19890005 Burrin, 1990, Level of nutrition and visceral organ size and metabolic activity in sheep, Br J Nutr, 64, 439, 10.1079/BJN19900044 Koong, 1985, Changes of fasting heat production and organ size of pigs during prolonged weight maintenance, 46 Vermorel, 1994, Energy metabolism in normal and double-muscled Belgian-Blue calves in relation with body composition and organ size, 209 Basarab, 2003, Residual feed intake and body composition in young growing cattle, Can J Anim Sci, 83, 189, 10.4141/A02-065 Fitzsimons, 2014, Visceral organ weights, digestion and carcass characteristics of beef bulls differing in residual feed intake offered a high concentrate diet, Animal, 8, 949, 10.1017/S1751731114000652 Ortigues, 1995, Whole body fuel selection in Ruminants: nutrient supply and utilization by major tissues, Proc Nutr Soc, 54, 235, 10.1079/PNS19950051 Mepham, 1982, Amino acid utilization by lactating mammary gland, J Dairy Sci, 65, 287, 10.3168/jds.S0022-0302(82)82191-7 Lapierre, 2005, The route of absorbed nitrogen into milk protein, Anim Sci, 80, 11, 10.1079/ASC41330011 Luiking, 2007, Interorgan exchange of amino acids: which is the driving force?, 319 Lapierre, 2010, Protein supply, glucose kinetics and milk yield in dairy cows, 275 Al-Jammas, 2013, Variation des dépenses énergétiques du foie en fonction des apports alimentaires et des nutriments absorbés chez les ruminants, Renc Rech Rum, 20, 68 Vernet, 2006, Conception and elaboration of a bibliographic database of net blood nutrient fluxes across organs and tissues in ruminants: data gathering and management prior to meta-analysis, Reprod Nutr Dev, 46, 527, 10.1051/rnd:2006031 Reynolds, 2006, Splanchnic amino acid metabolism in ruminants, 225 Bahloul, 2014 Loncke, 2009 Martineau, 2009, Technical note: correction of net portal absorption of nitrogen compounds for differences in methods: first step of a meta-analysis, J Anim Sci, 87, 3300, 10.2527/jas.2008-1729 Loncke, 2015, Empirical prediction of net splanchnic release of ketogenic nutrients, acetate, butyrate and beta-hydroxybutyrate in ruminants: a meta-analysis, Animal, 9, 449, 10.1017/S1751731114002638 Bergman, 1971, Metabolism of volatile fatty acids by liver and portal-drained viscera in sheep, Am J Physiol, 221, 586, 10.1152/ajplegacy.1971.221.2.586 Kristensen, 2004, Splanchnic metabolism of volatile fatty acids absorbed from the washed reticulorumen of steers, J Anim Sci, 82, 2033, 10.2527/2004.8272033x Hanigan, 2004, A model of net amino acid absorption and utilization by the portal-drained viscera of the lactating dairy cow, J Dairy Sci, 87, 4247, 10.3168/jds.S0022-0302(04)73570-5 Rodriguez-Lopez, 2014, Influence of the para-aminohippuric acid analysis method on the net hepatic flux of nutrients in lactating cows, J Anim Sci, 92, 1074, 10.2527/jas.2013-7359 Rodriguez-Lopez, 2016, Evaluation of the overall measurement uncertainty in the determination of the net flux of nutrients and carbon balance through the liver in ruminants, Accred Qual Assurance, 21, 131, 10.1007/s00769-015-1187-3 Blaxter, 1962 Reynolds, 1995, Quantitative aspects of liver metabolism in ruminants, 351 Cantalapiedra-Hijar, 2014, Dietary carbohydrate composition modifies the milk N efficiency in late lactation cows fed low crude protein diets, Animal, 8, 275, 10.1017/S1751731113002012 Sepchat, 2013, Étude d’itinéraires de production innovants pour jeunes bovins en engraissement, Renc Rech Ruminants, 20, 169 Van Knegsel, 2007, Dietary energy source in dairy cows in early lactation: energy partitioning and milk composition, J Dairy Sci, 90, 1467, 10.3168/jds.S0022-0302(07)71632-6 Larsen, 2012, Effects of glucogenic and ketogenic feeding strategies on splanchnic glucose and amino acid metabolism in postpartum transition Holstein cows, J Dairy Sci, 95, 5946, 10.3168/jds.2012-5458 Cantalapiedra-Hijar, 2015, Diets rich in starch increase the posthepatic availability of amino acids in dairy cows fed diets at low and normal protein levels, J Dairy Sci, 97, 5151, 10.3168/jds.2014-8019 McGruire, 1995, Role of insulin in the regulation of mammary synthesis of fat and protein, J Dairy Sci, 78, 816, 10.3168/jds.S0022-0302(95)76693-0 Mackle, 2000, Effects of insulin and postruminal supply of protein on use of amino acids by the mammary gland for milk protein synthesis, J Dairy Sci, 83, 93, 10.3168/jds.S0022-0302(00)74860-0 Harmon, 1992, Impact of nutrition on pancreatic exocrine and endocrine secretion in ruminants: a review, J Anim Sci, 70, 1290, 10.2527/1992.7041290x Majdoub, 2003, Intraruminal propionate supplementation modifies hindlimb energy metabolism without changing the net splanchnic release of glucose in growing lambs, Br J Nutr, 89, 39, 10.1079/BJN2002740