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挤压复合饲料中的谷物和/或豆类蛋白质补充剂对体外瘤胃营养物质消化和氮代谢的影响。

Effect of extruding the cereal and/or the legume protein supplement of a compound feed on in vitro ruminal nutrient digestion and nitrogen metabolism.

作者信息

Solanas E, Castrillo C, Calsamiglia S

机构信息

Departamento de Producción Animal y Ciencia de los Alimentos, Universidad de Zaragoza, Miguel Servet, Zaragoza, Spain.

出版信息

J Anim Physiol Anim Nutr (Berl). 2007 Jun;91(5-6):269-77. doi: 10.1111/j.1439-0396.2007.00704.x.

Abstract

An experiment was performed to evaluate the effect of extruding the cereal and/or the protein supplement of a compound feed for intensively reared calves on ruminal N metabolism using an in vitro culture system. A conventional compound feed was produced without extruding [treatment non-extruded (NE)], with the cereal blend extruded (CE), with the protein blend extruded (PE) and with both cereal and protein blends extruded (CPE). Four experimental diets, consisted of 0.90 of each experimental compound feed and 0.10 barley straw were assessed using dual-flow continuous-culture fermenters. (15)N infusion as ammonia sulphate was used to label the microbial population. Average NH(3) concentration in fermenter effluents ranged from 270 mg/l with diet NE to 69 mg/l for diet CPE (p < 0.05) and volatile fatty acid concentrations ranged from 161 mm in diet PE to 130 mm in diet CPE (p < 0.05). Diets PE and CPE showed a lower true organic matter degradability (49.5% and 48.2%) than NE and CE (52.8% and 52.2%). Non-ammonia nitrogen flow in effluents was highest on diet CPE, intermediate on diets CE and PE and lowest on diet NE (p < 0.01), reflecting the differences in dietary N flow and dietary protein degradability (71.2%, 63.7%, 61.2% and 50.0%, respectively, for NE, CE, PE, CPE; p < 0.001). In contrast, microbial protein synthesis efficiency was lower for treatments including the cereal blend extruded, although the resulted differences were only significant (p < 0.001) for CPE diet.

摘要

进行了一项实验,以利用体外培养系统评估对集约化饲养犊牛的复合饲料中的谷物和/或蛋白质补充剂进行挤压处理对瘤胃氮代谢的影响。制备了一种常规复合饲料,其中一组不进行挤压处理[处理组为未挤压(NE)],一组对谷物混合物进行挤压处理(CE),一组对蛋白质混合物进行挤压处理(PE),还有一组对谷物和蛋白质混合物都进行挤压处理(CPE)。使用双流连续培养发酵罐评估了四种实验日粮,每种实验复合饲料占比0.90,大麦秸秆占比0.10。使用硫酸铵形式的(15)N注入来标记微生物群体。发酵罐流出物中的平均氨浓度范围为,NE日粮组为270毫克/升,CPE日粮组为69毫克/升(p < 0.05),挥发性脂肪酸浓度范围为,PE日粮组为161毫摩尔,CPE日粮组为130毫摩尔(p < 0.05)。PE和CPE日粮组的真有机物质降解率(分别为49.5%和48.2%)低于NE和CE日粮组(分别为52.8%和52.2%)。流出物中的非氨氮流量在CPE日粮组最高,在CE和PE日粮组居中,在NE日粮组最低(p < 0.01),这反映了日粮氮流量和日粮蛋白质降解率的差异(NE、CE、PE、CPE日粮组分别为71.2%、63.7%、61.2%和50.0%;p < 0.001)。相反,包括对谷物混合物进行挤压处理的处理组的微生物蛋白质合成效率较低,尽管只有CPE日粮组的差异具有统计学意义(p < 0.001)。

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