首页> 外文期刊>The Journal of Applied Poultry Research >A multienzyme preparation enhances the utilization of nutrients and energy from pure corn and wheat diets in broilers.
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A multienzyme preparation enhances the utilization of nutrients and energy from pure corn and wheat diets in broilers.

机译:一种多酶制剂可提高肉鸡纯玉米和小麦日粮中营养和能量的利用率。

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摘要

A metabolic experiment was conducted to investigate the effects of 2 different types of exogenous multienzyme preparations, one used to supplement a pure corn-based broiler diet (ME-C; mainly consisting of mannase, xylanase, cellulase, pectase, prolease, and glucoamylase) and the other added to a pure wheat-based broiler diet (ME-W; mainly containing xylanase, cellulase, glucanase, pectase, amylase, and glucoamylase), on the energy efficiency and nutrient utilization of broilers. Ninety 36-d-old Arbor Acres commercial male broilers were randomly allocated to 90 cages, and 72 of them were assigned to 8 treatment groups with 3 replicates of 3 broilers each. Four treatment groups were force-fed corn with different levels of ME-C (0, 50, 100, and 150 mg/kg), and the other 4 treatment groups were force-fed wheat with different levels of ME-W (0, 50, 100, and 150 mg/kg). The remaining 18 birds were taken as 1 group, with 3 replicates of 6 birds for each, and used for endogenous excreta collection. Digestibility values of DM, NDF, starch, gross energy, and ME were measured by "true" methods. The ME-C and ME-W added to pure corn- and wheat-based diets, respectively, enhanced (P<0.05) the apparent and true digestibility values of NDF, starch, DM, and gross energy and the AME and TME values of broilers. The nutrient digestibility and energy efficiency of corn responded quadratically (P<0.05) to increasing amounts of ME-C. However, the digestibility of nutrients in corn did not change significantly at 100 and 150 mg/kg of ME-C, indicating a saturation effect. Thus, supplementation of 100 mg/kg of ME-C is sufficient to maximize the nutrient utilization and energy conversion of corn. However, linear (P<0.001) and quadratic responses (P<0.01) were observed for the nutrient digestibility and ME values in wheat-based diets with increasing amounts of ME-W added.
机译:进行了一项代谢实验,研究了两种不同类型的外源多酶制剂的效果,其中一种用于补充纯玉米制的肉鸡日粮(ME-C;主要由甘露糖酶,木聚糖酶,纤维素酶,果胶酶,脯氨酸酶和葡糖淀粉酶组成)另一种添加到纯小麦制的肉鸡日粮中(ME-W;主要包含木聚糖酶,纤维素酶,葡聚糖酶,果胶酶,淀粉酶和葡糖淀粉酶),以提高肉鸡的能量效率和养分利用率。将90头36天大的Arbor Acres商业雄性肉鸡随机分配到90个笼子中,将其中72个分配到8个处理组,每组3个肉鸡重复3次。四个处理组是强制饲喂不同水平的ME-C(0、50、100和150 mg / kg)的玉米,其他四个处理组是强制饲喂不同水平的ME-W的玉米(0, 50、100和150 mg / kg)。其余18只鸟作为一组,每组6只鸟的3个重复,用于内源性排泄物收集。 DM,NDF,淀粉,总能量和ME的消化率值通过“真实”方法测量。分别添加到纯玉米和小麦饮食中的ME-C和ME-W可以提高( P <0.05)NDF,淀粉,DM和总能量的表观和真实消化率值肉鸡的AME和TME值。玉米的养分消化率和能量效率对ME-C含量的增加呈二次响应( P <0.05)。但是,在100和150 mg / kg的ME-C下,玉米中养分的消化率没有显着变化,表明存在饱和效应。因此,补充100 mg / kg的ME-C足以使玉米的养分利用率和能量转化最大化。然而,随着ME-含量的增加,小麦基日粮的养分消化率和ME值观察到线性( P <0.001)和二次响应( P <0.01)。 W添加。

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