Thirty healthy Holstein dairy cows in the dry period were randomly divided into three groups and fed diets with different net energy for lactation (group A: 1.2 Mcal/kg DM, group B: 1.3 Mcal/kg DM, and group C: 1.4 Mcal/kg DM) for 8 weeks prepartum. Thereafter, dairy cows were fed a diet of the same formulation (1.66 Mcal/kg DM) for 12 weeks postpartum. The effects of different dietary energy densities in the dry period on postpartum performance and metabolic parameters of dairy cows were observed. Milk yield was reduced by 14.5% in the low-energy diet group; however, there were no differences in milk composition between the three groups. Postpartum plasma β-hydroxybutyrate, non-esterified fatty acid, growth hormone, and glucagon levels were significantly decreased whereas leptin and neuropeptide levels were elevated in the low-energy diet group. Moreover, body fat mobilization was attenuated, and the decline in postpartum body condition was reduced in the low-energy diet group, thus effectively reducing the postpartum negative energy balance.
Janovick, N.A. and Drackley, J.K. (2010) Prepartum Dietary Management of Energy Intake Affects Postpartum Intake and Lactation Performance by Primiparous and Multiparous Holstein Cows. Journal of Dairy Science, 93, 3086-3102. https://doi.org/10.3168/jds.2009-2656
Grummer, R.R. (1995) Impact of Changes in Organic Nutrient Metabolism on Feeding the Transition Dairy Cow. Journal of Animal Science, 73, 2820-2833. https://doi.org/10.2527/1995.7392820x
Holcomb, C.S., Van Horn, H.H., Head, H.H., et al. (2001) Effects of Prepartum Dry Matter Intake and Forage Percentage on Postpartum Performance of Lactating Dairy Cows. Journal of Dairy Science, 84, 2051-2058. https://doi.org/10.3168/jds.S0022-0302(01)74649-8
Agenäs, S., Burstedt, E. and Holtenius, K. (2003) Effects of Feeding Intensity during the Dry Period. 1. Feed Intake, Body Weight, and Milk Production. Journal of Dairy Science, 86, 870-882. https://doi.org/10.3168/jds.S0022-0302(03)73670-4
Holtenius, K., Agenäs, S., Delavaud, C. and Chilliard, Y. (2003) Effects of Feeding Intensity during the Dry Period. 2. Metabolic and Hormonal Responses. Journal of Dairy Science, 86, 883-891. https://doi.org/10.3168/jds.S0022-0302(03)73671-6
Douglas, G.N., Overton, T.R., Bateman, H.G., Dann, H.M. and Drackley, J.K. (2006) Prepartal Plane of Nutrition, Regardless of Dietary Energy Source, Affects Periparturient Metabolism and Dry Matter Intake in Holstein Cows. Journal of Dairy Science, 89, 2141-2157. https://doi.org/10.3168/jds.S0022-0302(06)72285-8
Dann, H.M., Litherland, N.B., Underwood, J.P., et al. (2006) Diets during Far-Off and Close-Up Dry Periods Affect Periparturient Metabolism and Lactation in Multiparous Cows. Journal of Dairy Science, 89, 3563-3577. https://doi.org/10.3168/jds.S0022-0302(06)72396-7
Beever, D.E. (2006) The Impact of Controlled Nutrition during the Dry Period on Dairy Cow Health, Fertility and Performance. Animal Reproduction Science, 96, 212-226.
Ferguson, J.D., Galligan, D.T. and Thomsen, N. (1994) Principal Descriptors of Body Condition Score in Holstein Cows. Journal of Dairy Science, 77, 2695-2703. https://doi.org/10.3168/jds.S0022-0302(94)77212-X
Dann, H.M., Varga, G.A. and Putnam, D.E. (1999) Improving Energy Supply to Late Gestation and Early Postpartum Dairy Cows. Journal of Dairy Science, 82, 1765-1778. https://doi.org/10.3168/jds.S0022-0302(99)75407-X
Ingvartsen, K.L. and Andersen, J.B. (2000) Integration of Metabolism and Intake Regulation: A Review Focusing on Periparturient Animals. Journal of Dairy Science, 83, 1573-1597. https://doi.org/10.3168/jds.S0022-0302(00)75029-6
Dewhurst, R.J., Moorby, J.M., Dhanoa, M.S., et al. (2000) Effects of Altering Energy and Protein Supply to Dairy Cows during the Dry Period. 1. Intake, Body Condition, and Milk Production. Journal of Dairy Science, 83, 1782-1794. https://doi.org/10.3168/jds.S0022-0302(00)75049-1
Doepel, L., Lapierre, H. and Kennelly, J.J. (2002) Peripartum Performance and Metabolism of Dairy Cows in Response to Prepartum Energy and Protein Intake. Journal of Dairy Science, 85, 2315-2334. https://doi.org/10.3168/jds.S0022-0302(02)74312-9
Zuo, Z.C., Deng, J.L., Wang, Z., et al. (2005) Effects of Different Energy Intake on the Performance and Lipid Metabolism of Periparturient Dairy Cows. Heilongjiang Animal Science and Veterinary Medicine, 11, 19-22.
Niu, S.L., Li, Y.F., Wang, Z., et al. (2005) Effects of Energy Intake on Plasma Concentration of Leptin and Milk Production of Leptin and Milk Production in Periparturient Dairy Cows. Animal Husbandry & Veterinary Medicine, 37, 1-4.
Waltner, S.S., McNamara, J.P. and Hillers, J.K. (1993) Relationships of Body Condition Score to Production Variables in High Producing Holstein Dairy Cattle. Journal of Dairy Science, 76, 3410-3419. https://doi.org/10.3168/jds.S0022-0302(93)77679-1
Putnam, D.E. and Varga, G.A. (1998) Protein Density and Its Influence on Metabolite Concentration and Nitrogen Retention by Holstein Cows in Late Gestation. Journal of Dairy Science, 81, 1608-1618. https://doi.org/10.3168/jds.S0022-0302(98)75727-3
Vandehaar, M.J., Yousif, G., Sharma, B.K., et al. (1999) Effect of Energy and Protein Density of Prepartum Diets on Fat and Protein Metabolism of Dairy Cattle in the Periparturient Period. Journal of Dairy Science, 82, 1282-1295. https://doi.org/10.3168/jds.S0022-0302(99)75351-8
Rabelo, E., Rezende, R.L., Bertics, S.J., et al. (2003) Effects of Transition Diets Varying in Dietary Energy Density on Lactation Performance and Ruminal Parameters of Dairy Cows. Journal of Dairy Science, 86, 916-925. https://doi.org/10.3168/jds.S0022-0302(03)73674-1
Janovick, N.A., Boisclair, Y.R. and Drackley, J.K. (2011) Prepartum Dietary Energy Intake Affects Metabolism and Health during the Periparturient Period in Primiparous and Multiparous Holstein Cows. Journal of Dairy Science, 94, 1385-1400. https://doi.org/10.3168/jds.2010-3303
Guo, J., Peters, R.R. and Kohn, R.A. (2007) Effect of a Transition Diet on Production Performance and Metabolism in Periparturient Dairy Cows. Journal of Dairy Science, 90, 5247-5258. https://doi.org/10.3168/jds.2007-0326
Itoh, H., Tamura, K., Motoi, Y. and Kawawa, F. (1997) Serum Apolipoprotein B-100 Concentrations in Healthy and Diseased Cattle. Journal of Veterinary Medical Science, 59, 587-591. https://doi.org/10.1292/jvms.59.587
Canfield, R.W., Sniffen, C.J. and Butler, W.R. (1990) Effects of Excess Degradable Protein on Postpartum Reproduction and Energy Balance in Dairy Cattle. Journal of Dairy Science, 73, 2342-2349. https://doi.org/10.3168/jds.S0022-0302(90)78916-3
Rukkwamsuk, T., Kruip, T.A.M., Meijer, G.A.L. and Wensing, T. (1999) Hepatic Fatty Acid Composition in Periparturient Dairy Cows with Fatty Liver Induced by Intake of a High Energy Diet in the Dry Period. Journal of Dairy Science, 82, 280- 287. https://doi.org/10.3168/jds.S0022-0302(99)75234-3
Rukkwamsuk, T., Wensing, T. and Geelen, M.J.H. (1998) Effect of Overfeeding during the Dry Period on Regulation of Adipose Tissue Metabolism in Dairy Cows during the Periparturient Period. Journal of Dairy Science, 81, 2904-2911. https://doi.org/10.3168/jds.S0022-0302(98)75851-5
Rabelo, E., Rezende, R.L., Bertics, S.J., et al. (2005) Effects of Pre- and Post-Fresh Transition Diets Varying in Dietary Energy Density on Metabolic Status of Periparturient Dairy Cows. Journal of Dairy Science, 88, 4375-4383. https://doi.org/10.3168/jds.S0022-0302(05)73124-6
Contreras, L.L., Ryan, C.M. and Overton, T.R. (2004) Effects of Dry Cow Grouping Strategy and Prepartum Body Condition Score on Performance and Health of Transition Dairy Cows. Journal of Dairy Science, 87, 517-523. https://doi.org/10.3168/jds.S0022-0302(04)73191-4
Houseknecht, K.L. and Portocarrero, C.P. (1998) Leptin and Its Receptors: Regulators of Whole-Body Energy Homeostasis. Domestic Animal Endocrinology, 15, 457-475.
Chilliard, Y., Bonnet, M., Delavaud, C., et al. (2001) Leptin in Ruminants. Gene Expression in Adipose Tissue and Mammary Gland, and Regulation of Plasma Concentration. Domestic Animal Endocrinology, 21, 271-295.
Maffei, M., Halaas, J. and Ravussin, E. (1995) Leptin Levels in Human and Rodent: Measurement of Plasma Leptin and OB RNA in Obese and Weight-Reduced Subjects. Nature Medicine, 1, 1155-1161. https://doi.org/10.1038/nm1195-1155
Block, S.S., Butler, W.R., Ehrhardt, R.A., Bell, A.W., Van Amburgh, M.E. and Boisclair, Y.R. (2001) Decreased Concentration of Plasma Leptin in Periparturient Dairy Cows Is Caused by Negative Energy Balance. Journal of Endocrinology, 171, 339-348. https://doi.org/10.1677/joe.0.1710339
Liefers, S.C., Veerkamp, R.F., Te Pas, M.F.W., Delavaud, C., Chilliard, Y. and van der Lende, T. (2003) Leptin Concentrations in Relation to Energy Balance, Milk Yield, Intake, Live Weight, and Estrus in Dairy Cows. Journal of Dairy Science, 86, 799-807. https://doi.org/10.3168/jds.S0022-0302(03)73662-5
Clark, J.T., Gist, R.S., Kalra, S.P. and Kalra, P.S. (1988) Alpha 2-Adrenoceptor Blockade Attenuates Feeding Behavior Induced by Neuropeptide Y and Epinephrine. Physiology & Behavior, 43, 417-422.
Kalra, S.P., Dube, M.G., Sahu, A., Phelps, C.P. and Kalra, P.S. (1991) Neuropeptide Y Secretion Increases in the Paraventricular Nucleus in Association with Increased Appetite for Food. Proceedings of the National Academy of Sciences, 88, 10931- 10935. https://doi.org/10.1073/pnas.88.23.10931
Yang, C., Cui, H.X., Fan, P., et al. (2005) Hypothalamus NPY Neuron Culture and Effects of Leptin on NPY mRNA in Rat. Basic Medical Sciences and Clinics, 25, 248-252.