饲料代谢能量和鸡饲料材料的概念模型基于代理和布鲁托能源的分析

Pendugaan Energi, Metabolis Pakan, D. Bahan, Pakan Ayam, Broiler Berdasarkan, Analisis Proksimat, dan Energi Bruto, F. Wahyudi, Sumiati, W. Hermana
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引用次数: 1

摘要

本研究旨在建立基于近似分析和总能的肉鸡日粮和饲料代谢能估算模型。估计模型采用多元和简单线性回归分析,采用体内数据方法。采用质量检测中心和饲料认证实验室提供的34个发菜日粮数据、33个育肥肉日粮数据、17个实验日粮数据、14个玉米数据、8个棕榈核饼(PKC)数据等研究数据,以水分(MC)、灰分、粗蛋白质(CP)、粗脂肪(EE)、粗纤维(CF)、GE和ME作为数据库,采用SPSS 20版本进行分析。结果表明:用多元回归方程估算的发菜日粮代谢能= 244.89 + 201.34x(MC) - 415.85x(灰分)- 0.87x(粗灰分)+ 282.58x(粗灰分)- 284.96x(CF),育肥鱼日粮代谢能= 6451.05 - 244.99x(MC) - 226.72x(粗灰分)- 101.40x(粗灰分)+ 363.12x(粗灰分),试验日粮代谢能= 3,001.07 + 41.39x(MC) - 19.49x(灰分)- 12.82 x(粗灰分)+ 87.31x(粗灰分)- 160.99x(CF),玉米ME= 8,504.07- 301.32x(MC) + 196.41x(灰分)-252.58x(CP) + 114.52x(EE) + 47.99x(CF)和PKC ME= 6,197.28 - 111.45x(CF),而起始商品日粮ME= 3,821.79 - 0.15GE,育肥肉商品日粮ME= 12,266.23 - 2.19 (GE),研究日粮ME= 1,416.83 + 0.398x(GE),玉米ME= -2,958.80 + 1.68x(GE), PKC ME= -5,769.41 + 2.09x(GE)的线性方程。这两个模型可用于商品育肥肉日粮、试验日粮、玉米和PKC中代谢能含量的估算,但不能用于商品饲料发酵剂。关键词:鸡饲料,玉米,代谢能,棕榈仁饼,回归分析
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Model Pendugaan Energi Metabolis Pakan dan Bahan Pakan Ayam Broiler Berdasarkan Analisis Proksimat dan Energi Bruto
This study aimed to make estimation model of metabolizable energy (ME) of broiler chicken ration and feedstuffs based on proximate analysis and gross energy (GE). The estimation model used multiple and simple linear regression analysis with in vivo data approach.  A total of 34 starter commercial ration data, 33 finisher commercial ration data, 17 experimental ration data, 14 corn data, 8 palm kernel cake (PKC) data from Center for Quality Testing and Feed Certification Laboratory and other research while the moisture content (MC), ash, crude protein (CP), ether extract (EE), crude fiber (CF), GE and ME were used as database and analyzed using SPSS version 20. The results showed that ME estimation using multiple regression equation for starter commercial ration ME = 2,444.89 + 201.34x(MC) - 415.85x(ash) - 0.87x(CP) + 282.58x(EE)  284.96x(CF), finisher commercial ration ME = 6,451.05 - 244.99x(MC) - 226.72x(ash) - 101.40x(EE) + 363.12x(CF), experimental ration ME = 3,001.07 + 41.39x(MC) - 19.49x(ash) - 12.82 x(CP) + 87.31x(EE) - 160.99x(CF), corn ME= 8,504.07- 301.32x(MC) + 196.41x(ash) -252.58x(CP) + 114.52x(EE) + 47.99x(CF) and PKC ME = 6,197.28 - 111.45x(CF) while linear equation for starter commercial ration ME= 3,821.79 - 0.15GE, finisher commercial ration ME = 12,266.23 - 2.19 (GE), research ration ME= 1,416.83 + 0.398x(GE), corn ME= -2,958.80 + 1.68x(GE), PKC ME = -5,769.41 + 2.09x(GE). These two models could be used to estimate ME content in commercial finisher ration, experimental ration, corn, and PKC whereas both models could not be used for commercial feed starter. Key words:        chicken feed, corn, metabolizable energy, palm kernel cake, regression analysis
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