以不同水平的膳食纤维和蛋白质为饲料的生长期大鼠的能量代谢和蛋白质平衡。

H Jørgensen, X Q Zhao, P K Theil, V M Gabert, K E Bach Knudsen
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引用次数: 13

摘要

本研究旨在探讨不同水平的膳食纤维(DF)和膳食蛋白质对大鼠内脏器官大小、消化率、氮平衡和能量代谢的影响。对初始体重约为 76 克的 36 只雄性 Wistar 大鼠进行了因子设计,包括三个水平的膳食纤维(低,100 克/千克 DM:中,250 克/千克 DM 和高,290 克/千克 DM)和两个水平的膳食蛋白质(低,120 克/千克 DM 和高,223 克/千克 DM)。添加的纤维来源是豆壳,丹麦鱼粉是日粮蛋白质的唯一来源。对六只大鼠(一组)进行了气体交换测量,同时单独收集尿液和粪便。食物/空体增重比增加(P
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy metabolism and protein balance in growing rats fed different levels of dietary fibre and protein.

A study was performed to investigate the effect of different levels of dietary fibre (DF) and dietary protein on visceral organ size, digestibility, nitrogen balance and energy metabolism in rats. Thirty-six male Wistar rats, initial body weight about 76 g were used in a factorial design consisting of three levels of DF (low, 100 g/kg DM: medium, 250 g/kg DM and high, 290 g/kg DM) and two levels of dietary protein (low, 120 g/kg DM and high, 223 g/kg DM). The added fibre source was soybean hulls and Danish fish meal was used as sole source of dietary protein. Measurements of gas-exchange were done on six rats (one group) while urine and faeces were collected individually. The ratio of food/empty body gain increased (P<0.05) with increasing DF and decreasing levels of dietary protein. The weight of the digestive tract was larger (P<0.05) in rats fed the high fibre diet than in those fed the low fibre diet. The digestibility of nutrients and energy decreased linearly with increasing level of soybean fibre (P<0.05). An increased intake of DF was associated with a concomitant loss of protein and energy to faeces. The microbial degradation of NSP and other unabsorbed carbohydrates caused considerably changes in N metabolism of the colon. In rats fed the low protein diets increased levels of DF decreased N excretion in urine and increased N excretion in faeces, while the ratio of retained/digested protein remained constant. When rats were fed the high protein diet protein retention dropped in response to DF both absolute and relative to digested amount, indicating that energy intake could be a limiting factor. Heat production as a percentage of metabolizable energy (HP/ME) was higher (P<0.05) in rats fed the low protein diet than in rats fed the high protein diet, but no significant difference was found among DF levels.

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