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Effects of hulless barley and exogenous beta-glucanase levels on ileal digesta soluble beta-glucan molecular weight digestive tract characteristics and performance of broiler chickens

机译:HULLESS大麦和外源性β-葡聚糖酶水平对ILEAL DIGESTA可溶性β-葡聚糖分子量消化道特征的影响和肉鸡的性能

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摘要

The reduced use of antibiotics in poultry feed has led to the investigation of alternatives to antibiotics, and one such substitution is fermentable carbohydrates. Exogenous β-glucanase (BGase) is commonly used in poultry fed barley-based diets to reduce digesta viscosity. The effects of hulless barley (HB) and BGase levels on ileal digesta soluble β-glucan molecular weight, digestive tract characteristics, and performance of broiler chickens were determined. A total of 360 day-old broilers were housed in battery cages (4 birds per cage) and fed graded levels of high β-glucan HB (CDC Fibar; 0, 30, and 60% replacing wheat) and BGase (Econase GT 200 P; 0, 0.01, and 0.1%) in a 3 × 3 factorial arrangement. Beta-glucan peak molecular weight in the ileal digesta was lower with 30 and 60 than 0% HB, whereas the peak decreased with increasing BGase. The weight average molecular weight was lower at 0.1 than 0% BGase in wheat diets, whereas in HB diets, it was lower at 0.01 and 0.1 than 0% BGase. The maximum molecular weight was lower with 0.01 and 0.1 than 0% BGase regardless of the HB level. The maximum molecular weight was lower with HB than wheat at 0 or 0.01% BGase. Overall, empty weights and lengths of digestive tract sections increased with increasing HB, but there was no BGase effect. Hulless barley decreased the duodenum and jejunum contents, whereas increasing the gizzard (diets with BGase), ileum, and colon contents. The jejunum and small intestine contents decreased with increasing BGase. Ileal and colon pH increased with increasing HB, but there was no BGase effect. Treatment effects were minor on short-chain fatty acids levels and performance. In conclusion, exogenous BGase depolymerized the ileal digesta soluble β-glucan in broiler chickens in a dose-dependent manner. Overall, feed efficiency was impaired by increasing HB levels. However, HB and BGase did not affect carbohydrate fermentation in the ileum and ceca, although BGase decreased ileal viscosity and improved feed efficiency at the 0.1% dietary level.
机译:减少使用抗生素在家禽饲料中导致对抗生素的替代品的调查,并且一种这种取代是可发酵的碳水化合物。外源性β-葡聚糖酶(BGase)通常用于家禽喂养大麦的饮食中,以减少Digesta粘度。确定了HULLESS大麦(HB)和BGA酶水平对髂骨Digesta可溶性β-葡聚糖分子量,消化道特性和肉鸡鸡的性能的影响。共有360天的肉鸡被安置在电池笼中(每个笼子4鸟)和喂养高β-葡聚糖Hb的分级水平(CDC纤维; 0,30和60%代替小麦)和BGase(Econase GT 200 P. ; 0,0.01和0.1%)以3×3分数排列。 β-葡聚糖峰值分子量在髂骨中较低,30和60%Hb,而BGase的峰值降低。在小麦饮食中,重均分子量在0.1比0%BGA酶下较低,而在Hb饮食中,它以0.01和0.1比0%BGase较低。无论HB水平如何,最大分子量较低,0.01和0.1比0%BGA酶。在0或0.01%BGase的Hb中,最大分子量低于小麦。总体而言,随着Hb的增加,消化道部分的空体重和长度增加,但没有BGase效应。 Hulless Barley减少了十二指肠和Jejunum的内容,而增加八颗(用BGase饮食),回肠和结肠内容物。随着BGase的增加,Jejunum和小肠内容物降低。含量和结肠pH随着Hb的增加而增加,但没有BGase效应。治疗效果在短链脂肪酸水平和性能下轻微。总之,以剂量依赖性方式,外源BGGase将肉鸡鸡中的髂骨消化可溶性β-葡聚糖脱溶。总的来说,通过增加HB水平造成饲料效率。然而,Hb和Bgase在回肠和CECA中没有影响碳水化合物发酵,尽管BGase降低了髂骨粘度和0.1%膳食水平的提高进给效率。

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