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碳水化合物酶组合对细胞壁多糖的降解及其对营养物质利用和肉鸡生产性能的影响。

Degradation of cell wall polysaccharides by combinations of carbohydrase enzymes and their effect on nutrient utilization and broiler chicken performance.

作者信息

Meng X, Slominski B A, Nyachoti C M, Campbell L D, Guenter W

机构信息

Department of Animal Science, University of Manitoba, Winnipeg, Canada R3T 2N2.

出版信息

Poult Sci. 2005 Jan;84(1):37-47. doi: 10.1093/ps/84.1.37.

Abstract

In vitro incubation studies were carried out to determine if various carbohydrase preparations contained appropriate activities to target nonstarch polysaccharides (NSP) of wheat, soybean meal (SBM), canola meal, and peas. Triplicate samples (0.1 g) were incubated with a number of carbohydrase preparations (i.e., cellulase, pectinase, xylanase, glucanase, galactanase, and mannanase) or their combinations at 45 degrees C and pH 5.2. A more pronounced degradation of NSP was achieved when the enzyme preparations were used in concert. When compared with the control (nonenzyme treatment), the highest degree of NSP degradation reached was 37% for wheat, and 36, 26, and 28% for canola meal, SBM, and peas, respectively. Four enzyme combinations were studied further in a 2-wk (5 to 18 d of age) growth performance and nutrient digestibility trial with broiler chickens. All enzyme combinations were effective in improving (P < 0.05) weight gain, feed-to-gain ratio, AMEn, apparent ileal digestibilities of starch and protein, and apparent total tract digestibility of NSP in birds fed a wheat, wheat screening, SBM, canola meal, and peas-based diet. The most complex enzyme combination was found to be superior (P < 0.05) to others in improving ileal protein digestibility and feed-to-gain ratio. The effectiveness of this combination in elimination of the nutrient-encapsulating effect of cell walls was further evaluated in a balance study with adult roosters fed a conventionally ground full-fat canola seed. Enzyme addition increased (P < 0.05) NSP digestibility from 11.1 to 30.1%, which, in turn, resulted in a marked increase (P < 0.05) in TMEn value (4.176 vs 4.744 Mcal/kg) of the seed. It is evident from the present studies that the addition of an appropriate combination of carbohydrase enzymes to target cell wall polysaccharide structures could further improve enzyme efficacy in practical wheat, SBM, canola meal, and peas-based broiler diets.

摘要

进行了体外培养研究,以确定各种碳水化合物酶制剂是否具有合适的活性来作用于小麦、豆粕、油菜籽粕和豌豆中的非淀粉多糖(NSP)。将一式三份的样品(0.1克)与多种碳水化合物酶制剂(即纤维素酶、果胶酶、木聚糖酶、葡聚糖酶、半乳聚糖酶和甘露聚糖酶)或它们的组合在45℃和pH 5.2条件下进行培养。当酶制剂协同使用时,NSP的降解更为明显。与对照(非酶处理)相比,小麦的NSP最高降解程度达到37%,油菜籽粕、豆粕和豌豆的分别为36%、26%和28%。在一项为期2周(5至18日龄)的肉鸡生长性能和养分消化率试验中,对四种酶组合进行了进一步研究。在以小麦、小麦筛余物、豆粕、油菜籽粕和豌豆为基础的日粮中饲养的肉鸡中,所有酶组合均能有效提高(P<0.05)体重增加、料重比、表观代谢能、淀粉和蛋白质的表观回肠消化率以及NSP的表观全肠道消化率。发现最复杂的酶组合在提高回肠蛋白质消化率和料重比方面优于其他组合(P<0.05)。在一项对成年公鸡饲喂常规粉碎的全脂油菜籽的平衡研究中,进一步评估了该组合在消除细胞壁养分包裹效应方面的有效性。添加酶使NSP消化率从11.1%提高到30.1%(P<0.05),这反过来又导致种子的真代谢能值显著增加(P<0.05)(4.176对4.744兆卡/千克)。从目前的研究中可以明显看出,添加合适的碳水化合物酶组合以作用于细胞壁多糖结构,可以进一步提高实际的以小麦、豆粕、油菜籽粕和豌豆为基础的肉鸡日粮中的酶效率。

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