用[15N]同位素稀释技术估计肉仔鸡内源氮损失:饲粮脂肪类型和木聚糖酶添加的影响

S Dänicke, H Jeroch, O Simon
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引用次数: 12

摘要

12 ~ 18日龄雄性肉仔鸡饲喂添加[15N]H4HCO3的低蛋白饲粮(15.5% CP),以标记内源n成分。试验饲粮为黑麦基础饲粮(56%),饲粮中含有10%大豆油(S)或10%牛油(T),每一种饲粮中不添加(-)或添加(+)含木聚糖酶的酶制剂(2700 IU/kg, pH 5.3)。在两个实验期间,每天监测排泄物、粪便和尿液的[15N]-原子百分比过量(APE)。并在实验结束时测定各组织的APE。实验最后一天尿液的APE介于胰腺和空肠组织的APE之间,这一观察结果支持了将尿液APE作为内源性n池指标的有效性。实验结束时,通过同位素稀释技术检测粪便和尿液中APE的比例,估计内源性n的比例。饲喂T(-)日粮的鸟类粪便中内源氮的比例最高。S(-)、S(+)、T(-)和T(+)饲喂组的比例分别为0.321、0.319、0.451和0.289。木聚糖酶的添加降低了内源n比例(S(-)、S(+)、T(-)和T(+)饲鸟粗蛋白质表观消化率分别为85.6、86.2、84.3和88.5%),内源n比例的损失导致所有处理的粗蛋白质真消化率几乎相等(90.3、90.6、90.4和91.5%)。S(-)、S(+)、T(-)和T(+)喂养的鸟类面部内源氮含量分别为87、69、244和81 mg / kg / kg体重/ d。由此可见,当饲粮中添加大豆油时,饲粮中添加木聚糖酶对肉鸡内源n分泌没有影响。然而,添加牛脂而不是大豆油显著增加了这些n损失,添加木聚糖酶可以逆转这一效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Endogenous N-losses in broilers estimated by a [15N]-isotope dilution technique: effect of dietary fat type and xylanase addition.

Male broilers were given a low protein diet (15.5% CP) spiked with [15N]H4HCO3 from day 12 to day 18 of age to label the endogenous N-constituents. Experimental diets were subsequently fed from day 19 to day 24 of age and consisted of a rye based diet (56% dietary inclusion) which contained either 10% soya oil (S) or 10% beef tallow (T), each of which was either unsupplemented (-) or supplemented (+) with a xylanase containing enzyme preparation (2700 IU/kg at pH 5.3). [15N]-atom percent excess (APE) of excreta, faeces and urine were monitored on a daily basis during both experimental periods. Furthermore, APE was measured in various tissues at the end of the experiment. The APE of urine on the last day of the experiment was between the APE of the pancreas and that of the jejunal tissue, an observation which supported the usefulness of using urinary APE as an indicator for the endogenous N-pool. Endogenous N-proportions were estimated by an isotope dilution technique at the end of the experiment by examination of the ratio of APE in faeces and urine. The endogenous N-proportion in the faeces was greatest in birds receiving the T(-) diet. The proportions were 0.321, 0.319, 0.451 and 0.289 in S(-), S(+), T(-) and T(+) fed groups, respectively. Xylanase addition reduced endogenous N-proportion, a factor which was used to correct apparent crude protein digestibility (85.6, 86.2, 84.3 and 88.5% in S(-), S(+), T(-) and T(+) fed birds, respectively) for endogenous losses resulting in almost equal true digestibilities of crude protein for all treatments (90.3, 90.6, 90.4 and 91.5%). The amounts of endogenous N in faces were estimated to be 87, 69, 244 and 81 mg per day per kg0.67 body weight in S(-), S(+), T(-) and T(+) fed birds, respectively. It was concluded that xylanase supplementation of a rye based broiler diet does not change endogenous N-secretions when the supplemental fat is soya oil. However, addition of tallow rather than soya oil increased these N-losses significantly, an effect which was reversed by xylanase addition.

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