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首页> 外文期刊>Journal of Animal Physiology and Animal Nutrition >Effects of dietary energy levels on Pectoralis major mixed muscle protein turnover and body composition in two broiler lines housed in different grow-out environments
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Effects of dietary energy levels on Pectoralis major mixed muscle protein turnover and body composition in two broiler lines housed in different grow-out environments

机译:膳食能量水平对两种肉鸡系列胸肌蛋白质周转和身体组成的影响,其在不同的繁殖环境中

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This study determined the Pectoralis (P) major mixed muscle protein turnover (PT) in two meat broiler lines, Line A and Line B, during the finishing grow-out feeding period (21-42 days) as affected by the dietary metabolizable energy (ME) levels and ambient temperatures. Experimental finishing diets consisted of 80, 90, 100, 110 and 120% ME of recommended nutrient guidelines for energy level. Fractional synthesis rates (FSR) or fractional degradation rates (FDR) were measured in P. major at day 36 and 42. Protein and fat mass gain were measured, and respective energy retention efficiencies as protein and fat (EREp and EREf) were determined. Metabolic heat production (HP) was also reported. Experimental feeding studies were conducted in cool season (24 hr mean: 69.91F and 63.98% RH) and in hot season (24 hr mean: 77.55F and 86.04% RH). Results showed that FSR or FDR values were not affected by dietary ME levels at day 36, whereas reduced FSR (p < .05) were observed at day 42 fed diets with reduced ME levels (<= 100% ME) which could have resulted from greater maintenance energy requirement of maturing broilers at that age. Broilers fed reduced ME diets (<= 100% ME) maintained protein mass (equivalent to broilers fed >= 100%-120% ME) by reduced FDR and increased feed intake. Grow-out ambient temperature did not affect FSR or FDR values across ME levels. Line B retained higher protein mass, lower fat mass and greater HP compared to Line A. This was followed by higher feed intake in Line B. Further, Line B exhibited higher EREp and lower EREf across dietary ME levels. In summary, PT homeostasis and body composition changes in broiler lines studied seemed to be regulated by the birds' intent to normalize energy intake as per physiological need by controlling feed intake.
机译:本研究测定了两个肉用肉鸡品系A和B在精整生长期(21-42天)的胸大肌(P)主要混合肌肉蛋白质周转率(PT),受日粮代谢能(ME)水平和环境温度的影响。实验性精加工饮食包括能量水平推荐营养指南的80%、90%、100%、110%和120%。在第36天和第42天测量了大白鼠的部分合成率(FSR)或部分降解率(FDR)。测量蛋白质和脂肪的质量增加,并测定蛋白质和脂肪的能量保持效率(EREp和EREf)。代谢热产生(HP)也有报道。在冷季(24小时平均温度:69.91F和63.98%相对湿度)和热季(24小时平均温度:77.55F和86.04%相对湿度)进行实验性喂养研究。结果表明,在第36天,FSR或FDR值不受日粮ME水平的影响,而在第42天,在ME水平降低(<=100%ME)的日粮中观察到FSR降低(p<0.05),这可能是由于成熟肉鸡在该年龄段的更大维持能量需求。通过降低FDR和增加采食量,饲喂低ME日粮(<=100%ME)的肉鸡保持了蛋白质质量(相当于饲喂>=100%-120%ME的肉鸡)。生长环境温度不影响ME水平的FSR或FDR值。与A品系相比,B品系保留了较高的蛋白质质量、较低的脂肪质量和较高的HP。其次,B品系的采食量较高。此外,B品系在膳食ME水平上表现出较高的EREp和较低的EREf。综上所述,所研究的肉鸡品系中的PT稳态和身体成分变化似乎受鸟类通过控制采食量使能量摄入正常化的意图的调节。

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