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利用酶技术提高全脂油籽的能量利用率。第二部分:亚麻籽。

The use of enzyme technology for improved energy utilization from full-fat oilseeds. Part II: flaxseed.

作者信息

Slominski B A, Meng X, Campbell L D, Guenter W, Jones O

机构信息

Department of Animal Science, University of Manitoba, Winnipeg, Canada.

出版信息

Poult Sci. 2006 Jun;85(6):1031-7. doi: 10.1093/ps/85.6.1031.

Abstract

An in vitro incubation study was carried out to determine whether various carbohydrase preparations contained appropriate activities to target nonstarch polysaccharides (NSP) of full-fat flaxseed. Enzyme preparations C (cellulase, 340 U/g), XG (xylanase, 63,600 U/g and glucanase, 48,300 U/g), P (pectinase, 10,000 U/g), and MC (mannanase, 10,900 U/g and cellulase, 600 U/ g), alone and in combination (C + P, C + XG, P + XG, C + P + XG, C + P + MC, and C + P + XG + MC), were evaluated. Triplicate samples of defatted flaxseed meal (0.1 g) were incubated with 1% single enzymes or 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. Compared with the control (no enzyme) treatment, the degree of NSP degradation averaged 34.7% when the sample was incubated with the 3 most effective enzyme combinations (C + P + XG, C + P + MC, and C + P + XG + MC). The effect of carbohydrase enzyme supplementation on energy utilization from full-fat flaxseed was investigated in a TMEn assay with adult roosters. When compared with the nonsupplemented sample, an increase (P < 0.05) in TMEn content from 2,717 to 3,751 kcal/kg (on average) was observed for the flaxseed supplemented with enzymes C + P + XG, C + P + MC, and C + P + XG + MC. A similar pattern of increase (P < 0.05) in fat and NSP digestibilities was noted. Enzyme combination C + P + XG was further evaluated in a 2-wk (5- to 18-d) trial with broiler chickens fed a corn and soybean meal-based flaxseed (15%) diet or the flaxseed diet supplemented with the enzyme at 3 different levels: 0.002, 0.01, and 0.05%. When supplemented at the highest level, the enzyme blend improved (P < 0.05) feed:gain, total tract DM, fat and NSP digestibilities, AMEn content, and ileal fat digestibility. No effect of enzyme supplementation, regardless of the level used, on ileal protein digestibility and digesta viscosity was observed. The results of the current study suggest that multiactivity carbohydrase enzyme supplements may be used as a means to improve energy utilization from full-fat flaxseed and, thus, enhance its feeding value for poultry.

摘要

进行了一项体外培养研究,以确定各种碳水化合物酶制剂是否具有针对全脂亚麻籽中非淀粉多糖(NSP)的适当活性。评估了酶制剂C(纤维素酶,340 U/g)、XG(木聚糖酶,63,600 U/g和葡聚糖酶,48,300 U/g)、P(果胶酶,10,000 U/g)和MC(甘露聚糖酶,10,900 U/g和纤维素酶,600 U/g)单独使用以及组合使用(C + P、C + XG、P + XG、C + P + XG、C + P + MC和C + P + XG + MC)的情况。将脱脂亚麻籽粕的三份重复样品(0.1 g)与1%的单一酶或酶组合在45℃和pH 5.2下孵育。当酶制剂联合使用时,NSP降解更明显。与对照(无酶)处理相比,当样品与3种最有效的酶组合(C + P + XG、C + P + MC和C + P + XG + MC)孵育时,NSP降解程度平均为34.7%。在成年公鸡的真代谢能(TMEn)测定中研究了补充碳水化合物酶对全脂亚麻籽能量利用的影响。与未补充酶的样品相比,补充了酶C + P + XG、C + P + MC和C + P + XG + MC的亚麻籽的TMEn含量从2,717平均增加到3,751 kcal/kg(P < 0.05)。脂肪和NSP消化率也有类似的增加模式(P < 0.05)。在一项为期2周(5至18日龄)的试验中,对酶组合C + P + XG进行了进一步评估,试验用肉鸡饲喂以玉米和豆粕为基础的含15%亚麻籽的日粮,或添加3种不同水平(0.002%、0.01%和0.05%)该酶的亚麻籽日粮。当以最高水平添加时,酶混合物改善了(P < 0.05)料重比、全肠道干物质、脂肪和NSP消化率、表观代谢能含量以及回肠脂肪消化率。未观察到补充酶(无论使用何种水平)对回肠蛋白质消化率和食糜粘度有影响。本研究结果表明,多活性碳水化合物酶补充剂可作为提高全脂亚麻籽能量利用的一种手段,从而提高其对家禽的饲喂价值。

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