Advances in predicting nutrient partitioning in the dairy cow: recognizing the central role of genotype and its expression through time.
暂无分享,去创建一个
D Sauvant | P. Faverdin | D. Sauvant | O. Martin | O Martin | N. Friggens | N C Friggens | P Faverdin | L Brun-Lafleur | L. Brun-Lafleur | N. Friggens | Daniel Sauvant | Philippe Faverdin | Olivier Martin
[1] K. Ingvartsen. Feeding- and management-related diseases in the transition cow , 2006 .
[2] L. Delaby,et al. Consequence on reproduction of two feeding levels with opposite effects on milk yield and body condition loss in Holstein and Normande cows , 2008 .
[3] E. H. van Der Waaij,et al. A resource allocation model describing consequences of artificial selection under metabolic stress. , 2004, Journal of animal science.
[4] D. Berry,et al. Holstein-Friesian strain and feed effects on milk production, body weight, and body condition score profiles in grazing dairy cows. , 2006, Journal of dairy science.
[5] P. Faverdin,et al. Effect of different feeding strategies on lactation performance of Holstein and Normande dairy cows. , 2009, Animal : an international journal of animal bioscience.
[6] J R Roche,et al. Invited review: Body condition score and its association with dairy cow productivity, health, and welfare. , 2009, Journal of dairy science.
[7] H. Petit,et al. Nutritional sub-fertility in the dairy cow: towards improved reproductive management through a better biological understanding. , 2010, Animal : an international journal of animal bioscience.
[8] Vincent Fromion,et al. Reconstruction and analysis of the genetic and metabolic regulatory networks of the central metabolism of Bacillus subtilis , 2008, BMC Systems Biology.
[9] J. Monod,et al. Le hasard et la nécessité : essai sur la philosophie naturelle de la biologie moderne , 1972 .
[10] N. Friggens,et al. The effect of breed and parity on curves of body condition during lactation estimated using a non-linear function. , 2007, Animal : an international journal of animal bioscience.
[11] A. Danfær. A dynamic model of nutrient digestion and metabolism in lactating dairy cows. , 1990 .
[12] R. Brinster,et al. Protein degradation during preimplantation development of the mouse. , 1981, Journal of reproduction and fertility.
[13] R F Veerkamp,et al. Genetic parameters for level and change of body condition score and body weight in dairy cows. , 2002, Journal of dairy science.
[14] M. Kaske,et al. Changes in factors affecting the rate of digesta passage during pregnancy and lactation in sheep fed on hay. , 1997, Reproduction, nutrition, development.
[15] M. Coffey,et al. Genetic association between body energy measured throughout lactation and fertility in dairy cattle. , 2010, Animal : an international journal of animal bioscience.
[16] J. H. M. Thornley,et al. The lactation curve in cattle: a mathematical model of the mammary gland , 1983, The Journal of Agricultural Science.
[17] J. Mee,et al. The effect of strain of Holstein-Friesian cow and feeding system on postpartum ovarian function, animal production and conception rate to first service. , 2005, Theriogenology.
[18] N. Friggens. Body lipid reserves and the reproductive cycle: towards a better understanding , 2003 .
[19] J. Dijkstra,et al. Effect of dietary energy source on energy balance, production, metabolic disorders and reproduction in lactating dairy cattle. , 2005, Reproduction, nutrition, development.
[20] C. Taylor. Genetic size-scaling rules in animal growth. , 1980 .
[21] M. Bonnet,et al. Adipose tissue metabolism and its role in adaptations to undernutrition in ruminants , 2000, Proceedings of the Nutrition Society.
[22] J France,et al. A model to describe growth patterns of the mammary gland during pregnancy and lactation. , 1997, Journal of dairy science.
[23] P. Faverdin,et al. Predicting energy x protein interaction on milk yield and milk composition in dairy cows. , 2010, Journal of dairy science.
[24] B. Tolkamp,et al. Theoretical developments in the study and prediction of food intake , 2001, The Proceedings of the Nutrition Society.
[25] D. Sauvant,et al. Modelling homeostatic and homeorhetic regulations in lactating animals , 1994 .
[26] F. Buckley,et al. Consequences of genetic selection for increased milk production in European seasonal pasture based systems of milk production , 2006 .
[27] Jennie E. Pryce,et al. Development and evaluation of a pastoral simulation model that predicts dairy cattle performance based on animal genotype and environmental sensitivity information , 2008 .
[28] R. Veerkamp,et al. Covariance functions across herd production levels for test day records on milk, fat, and protein yields. , 1998, Journal of dairy science.
[29] Gerry C. Emmans. A Method to Predict the Food Intake of Domestic Animals from Birth to Maturity as a Function of Time , 1997 .
[30] R. E. Everts,et al. Plane of nutrition prepartum alters hepatic gene expression and function in dairy cows as assessed by longitudinal transcript and metabolic profiling. , 2006, Physiological genomics.
[31] W. G. Hill,et al. Genetic evaluations of dairy bulls for daughter energy balance profiles using linear type scores and body condition score analyzed using random regression. , 2003, Journal of dairy science.
[32] P. Faverdin,et al. Modification of feed intake response to a beta 2-agonist by bovine somatotropin in lactating or dry dairy cows. , 1997, Journal of dairy science.
[33] C. Brownie,et al. The addition of cottonseed hulls to the starter and supplementation of live yeast or mannanoligosaccharide in the milk for young calves. , 2009, Journal of dairy science.
[34] M. Hanigan,et al. Altering the representation of hormones and adding consideration of gestational metabolism in a metabolic cow model reduced prediction errors. , 2009, Journal of dairy science.
[35] T. Yan,et al. Effects of dairy cow genotype with two planes of nutrition on energy partitioning between milk and body tissue. , 2006, Journal of dairy science.
[36] Aeo Malau-Aduli,et al. Modelling nutrient digestion and utilisation in farm animals , 2010 .
[37] E Kebreab,et al. Recent advances in modeling nutrient utilization in ruminants. , 2009, Journal of animal science.
[38] G. C. Kennedy,et al. The role of depot fat in the hypothalamic control of food intake in the rat , 1953, Proceedings of the Royal Society of London. Series B - Biological Sciences.
[39] C. F. Code. Control of food and water intake , 1967 .
[40] T. Larsen,et al. Metabolic and production profiles of dairy cows in response to decreased nutrient density to increase physiological imbalance at different stages of lactation. , 2012, Journal of dairy science.
[41] J. Wiseman,et al. Physiological limitations, nutrient partitioning. , 2005 .
[42] Roel F. Veerkamp,et al. On the use of simple ratios between lactation curve coefficients to describe parity effects on milk production , 1999 .
[43] S. Brotherstone,et al. Genetic profile of total body energy content of Holstein cows in the first three lactations. , 2005, Journal of dairy science.
[44] D. Reznick,et al. Big houses, big cars, superfleas and the costs of reproduction. , 2000, Trends in ecology & evolution.
[45] M. E. Van Amburgh,et al. Cornell Net Carbohydrate and Protein System: A model for precision feeding of dairy cattle , 2008 .
[46] Gerry C. Emmans,et al. Feed intake relative to stage of lactation for dairy cows consuming total mixed diets with a high or low ratio of concentrate to forage. , 1998, Journal of dairy science.
[47] Gerry C. Emmans,et al. Consequences of genetic change in farm animals on food intake and feeding behaviour , 2001, The Proceedings of the Nutrition Society.
[48] J. Drackley,et al. Adaptations of Glucose and Long-Chain Fatty Acid Metabolism in Liver of Dairy Cows during the Periparturient Period , 2001 .
[49] M D Hanigan,et al. A redefinition of the representation of mammary cells and enzyme activities in a lactating dairy cow model. , 2007, Journal of dairy science.
[50] P. Faverdin,et al. Substitution of roughage by concentrates for dairy cows , 1991 .
[51] A R Kristensen,et al. A stochastic model simulating the feeding-health-production complex in a dairy herd. , 2000, Journal of dairy science.
[52] J. Vierck,et al. Differential expression of genes in adipose tissue of first-lactation dairy cattle. , 2011, Journal of dairy science.
[53] D Sauvant,et al. A teleonomic model describing performance (body, milk and intake) during growth and over repeated reproductive cycles throughout the lifespan of dairy cattle. 1. Trajectories of life function priorities and genetic scaling. , 2010, Animal : an international journal of animal bioscience.
[54] C. Haley,et al. Yields of farmed species: constraints and opportunities in the 21st century , 2005 .
[55] P. Berg,et al. Late reproductive senescence in a rabbit line hyper selected for reproductive longevity, and its association with body reserves , 2007, Genetics Selection Evolution.
[56] R. L. Baldwin,et al. Modeling ruminant digestion and metabolism. , 1999, Advances in experimental medicine and biology.
[57] M. Hanigan,et al. Metabolic models of ruminant metabolism: recent improvements and current status. , 2006, Journal of dairy science.
[58] C. Simón,et al. Leptin and reproduction. , 2000, Human reproduction update.
[59] Seongwon Seo,et al. BMC Systems Biology BioMed Central Methodology article , 2009 .
[60] P. Bourgine,et al. From Molecules to Organisms: Towards Multiscale Integrated Models of Biological Systems , 2008 .
[61] J. Mcnamara,et al. Estimation of parameters describing lipid metabolism in lactation: challenge of existing knowledge described in a model of metabolism. , 2000, Journal of dairy science.
[62] N. Friggens,et al. Towards a biological basis for predicting nutrient partitioning: the dairy cow as an example. , 2007, Animal.
[63] J. Dijkstra,et al. An integrated mathematical model to evaluate nutrient partition in dairy cattle between the animal and its environment , 2004 .
[64] S. More,et al. Genetics of animal health and disease in cattle , 2011, Irish veterinary journal.
[65] M. Lucy,et al. Mechanisms linking nutrition and reproduction in postpartum cows. , 2019, Reproduction (Cambridge, England) Supplement.
[66] Lucy Mc. Mechanisms linking nutrition and reproduction in postpartum cows. , 2019 .
[67] The effect of strain of Holstein-Friesian dairy cow and pasture-based system on grass intake and milk production , 2006 .
[68] W. H. Broster,et al. Body score of dairy cows , 1998, Journal of Dairy Research.
[69] J. Mcnamara. Regulation of adipose tissue metabolism in support of lactation. , 1991, Journal of dairy science.
[70] D Sauvant,et al. A teleonomic model describing performance (body, milk and intake) during growth and over repeated reproductive cycles throughout the lifespan of dairy cattle. 2. Voluntary intake and energy partitioning. , 2010, Animal : an international journal of animal bioscience.
[71] R. Webb,et al. Effect of dietary-induced increases in circulating insulin concentrations during the early postpartum period on reproductive function in dairy cows. , 2002, Reproduction.
[72] M. Hanigan,et al. Energy balance in first-lactation Holstein, Jersey, and reciprocal F1 crossbred cows in a planned crossbreeding experiment. , 2010, Journal of dairy science.
[73] J. Jensen,et al. © American Dairy Science Association, 2007. Breed and Parity Effects on Energy Balance Profiles Through Lactation: Evidence of Genetically Driven Body Energy Change , 2007 .
[74] J. Mcnamara,et al. Expression of lipolytic genes in the adipose tissue of pregnant and lactating Holstein dairy cattle. , 2007, Journal of dairy science.
[75] J.J.M.H. Ketelaars,et al. Toward a new theory of feed intake regulation in ruminants , 1991 .
[76] P. Garnsworthy,et al. The effect of body condition of dairy cows at calving on their food intake and performance when given complete diets , 1982 .
[77] David M. McNeill,et al. Modelling Nutrient Digestion and Utilisation in Farm Animals , 2015 .
[78] B. Kinghorn,et al. Using mechanistic animal growth models to estimate genetic parameters of biological traits. , 2007, Animal : an international journal of animal bioscience.
[79] G. C. Emmans,et al. Genetic evaluation of dairy bulls for energy balance traits using random regression , 2001 .
[80] D. Sauvant. La modélisation systémique en nutrition , 1992 .
[81] M. Goddard,et al. A validated genome-wide association study in 2 dairy cattle breeds for milk production and fertility traits using variable length haplotypes. , 2010, Journal of dairy science.
[82] N. Friggens,et al. On the use of milk composition measures to predict the energy balance of dairy cows. , 2007, Journal of dairy science.
[83] G. Wake,et al. Modeling the interaction of milking frequency and nutrition on mammary gland growth and lactation. , 2003, Journal of dairy science.
[84] N. López-Villalobos,et al. Reaction norms used to quantify the responses of New Zealand dairy cattle of mixed breeds to nutritional environment , 2006 .
[85] I Vetharaniam,et al. Modeling the effect of energy status on mammary gland growth and lactation. , 2003, Journal of dairy science.
[86] J. Loor. Genomics of metabolic adaptations in the peripartal cow. , 2010, Animal : an international journal of animal bioscience.
[87] H. Petruzzi,et al. A dynamic model of feed intake regulation in dairy cows . Model evaluation , 2014 .
[88] R. Veerkamp,et al. Phenotypic profiles for body weight, body condition score, energy intake, and energy balance across different parities and concentrate feeding levels , 2006 .
[89] D E Bauman,et al. Partitioning of nutrients during pregnancy and lactation: a review of mechanisms involving homeostasis and homeorhesis. , 1980, Journal of dairy science.
[90] John P. McNamara,et al. Research, improvement and application of mechanistic, biochemical, dynamic models of metabolism in lactating dairy cattle , 2004 .
[91] J France,et al. Metabolism of the lactating cow: III. Properties of mechanistic models suitable for evaluation of energetic relationships and factors involved in the partition of nutrients , 1987, Journal of Dairy Research.
[92] P. Faverdin,et al. L'ingestion d'aliments par les vaches laitières et sa prévision au cours de la lactation , 2007 .
[93] G. Pollott,et al. A biological approach to lactation curve analysis for milk yield. , 2000, Journal of dairy science.
[94] R. Veerkamp,et al. Effects of genotype by environment interactions on milk yield, energy balance, and protein balance. , 2007, Journal of dairy science.
[95] S. Davis,et al. The effect of level of feeding, genetic merit, body condition score and age on biological parameters of a mammary gland model. , 2007, Animal : an international journal of animal bioscience.
[96] Jennie E. Pryce,et al. Simulation modelling of dairy cattle performance based on knowledge of genotype, environment and genotype by environment interactions: current status , 2005 .
[97] H. Petruzzi,et al. A dynamic model of feed intake regulation in dairy cows. Model description , 2004 .
[98] M. Lucy,et al. Somatotropic axis components and nutrient partitioning in genetically diverse dairy cows managed under different feed allowances in a pasture system. , 2009, Journal of dairy science.
[99] Gerry C. Emmans,et al. Prediction of body lipid change in pregnancy and lactation. , 2004, Journal of dairy science.
[100] Reale,et al. Mass‐dependent reproductive strategies in wild bighorn ewes: a quantitative genetic approach , 2000 .
[101] Jérémie Bourdon,et al. A generic stoichiometric model to analyse the metabolic flexibility of the mammary gland in lactating dairy cows , 2010 .
[102] J. Baudracco,et al. e-Cow: an animal model that predicts herbage intake, milk yield and live weight change in dairy cows grazing temperate pastures, with and without supplementary feeding. , 2012, Animal : an international journal of animal bioscience.
[103] R. Veerkamp,et al. Genetic analysis of body condition score of lactating Dutch Holstein and Red-and-White heifers. , 2001, Journal of dairy science.
[104] M. Lucy,et al. Somatotropic axis and concentrate supplementation in grazing dairy cows of genetically diverse origin. , 2011, Journal of dairy science.
[105] D. Sauvant,et al. Dynamic model of the lactating dairy cow metabolism. , 2007, Animal : an international journal of animal bioscience.
[106] Gerry C. Emmans,et al. Prediction of responses to required nutrients in dairy cows. , 1989, Journal of dairy science.