Literature DB >> 16206556

Modeling energy utilization and growth parameter description for broiler chickens.

N K Sakomura1, F A Longo, E O Oviedo-Rondon, C Boa-Viagem, A Ferraudo.   

Abstract

Two experiments were conducted to develop and evaluate a model to estimate ME requirements and determine Gompertz growth parameters for broilers. The first experiment was conducted to determine maintenance energy requirements and the efficiencies of energy utilization for fat and protein deposition. Maintenance ME (MEm) requirements were estimated to be 157.8, 112.1, and 127.2 kcal of ME/kg(0.75) per day for broilers at 13, 23, and 32 degrees C, respectively. Environmental temperature (T) had a quadratic effect on maintenance requirements (MEm = 307.87 - 15.63T + 0.3105T(2); r2= 0.93). Energy requirements for fat and protein deposition were estimated to be 13.52 and 12.59 kcal of ME/g, respectively. Based on these coefficients, a model was developed to calculate daily ME requirements: ME = BW(0.75) (307.87 - 15.63T + 0.3105 T2) + 13.52 Gf + 12.59 Gp. This model considers live BW, the effects of environmental temperature, and fractional fat (Gf) and protein (Gp) deposition. The second experiment was carried out to estimate the growth parameters of Ross broilers and to collect data to evaluate the ME requirement model proposed. Live BW, empty feather-free carcass, weight of the feathers, and carcass chemical compositions were analyzed until 16 wk of age. Parameters of Gompertz curves for each component were estimated. Males had higher growth potential and higher capacity to deposit nutrients than females, except for fat deposition. Data of BW and body composition collected in this experiment were fitted into the energy model proposed herein and the equations described by Emmans (1989) and Chwalibog (1991). The daily ME requirements estimated by the model determined in this study were closer to the ME intake observed in this trial compared with other models.

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Year:  2005        PMID: 16206556     DOI: 10.1093/ps/84.9.1363

Source DB:  PubMed          Journal:  Poult Sci        ISSN: 0032-5791            Impact factor:   3.352


  10 in total

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4.  Omics Multi-Layers Networks Provide Novel Mechanistic and Functional Insights Into Fat Storage and Lipid Metabolism in Poultry.

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5.  Earlier Metabolizable Energy Intake Level Influences Heat Production during a Following 3-Day Fast in Laying Hens.

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6.  Estimation of the net energy requirement for maintenance in broilers.

Authors:  Wei Liu; Chang Hua Lin; Zheng Ke Wu; Guo Hua Liu; Hai Jie Yan; Hua Ming Yang; Hui Yi Cai
Journal:  Asian-Australas J Anim Sci       Date:  2016-10-19       Impact factor: 2.509

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Review 8.  A review of heat stress in chickens. Part II: Insights into protein and energy utilization and feeding.

Authors:  Jean-Rémi Teyssier; Giorgio Brugaletta; Federico Sirri; Sami Dridi; Samuel J Rochell
Journal:  Front Physiol       Date:  2022-08-08       Impact factor: 4.755

9.  Betaine and Antioxidants Improve Growth Performance, Breast Muscle Development and Ameliorate Thermoregulatory Responses to Cyclic Heat Exposure in Broiler Chickens.

Authors:  Majid Shakeri; Jeremy James Cottrell; Stuart Wilkinson; Mitchell Ringuet; John Barton Furness; Frank Rowland Dunshea
Journal:  Animals (Basel)       Date:  2018-09-25       Impact factor: 2.752

10.  Factors affecting energy metabolism and evaluating net energy of poultry feed.

Authors:  Shahram Barzegar; Shu-Biao Wu; Mingan Choct; Robert A Swick
Journal:  Poult Sci       Date:  2019-12-30       Impact factor: 3.352

  10 in total

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