Enzyme Treatment Improves The Utilization Of Lupin-Based Diets By Japanese Quail (Coturnix Japonica)

M. Khalil, I. Malecki, M. El-Attrouny, G. Martin
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引用次数: 1

Abstract

In poultry, feeding diets including high concentrations of non-starch polysaccharides limits growth rate and feed conversion ratio, and causes problems in health and welfare because of the production of wet droppings. This problem is becoming more important as pressure builds to reduce costs by using alternative sources of dietary protein, such as lupin grain, rather than fish- or soybean-meal. We therefore tested whether enzymes that break down non-starch polysaccharides can overcome the problems with a lupin-based diet fed to Japanese quail. Chicks (18 days old) were allocated among 8 treatments, each replicated 3 times, with 12 chicks per replicate (ie, 36 birds per treatment). Chicks were fed diets formulated to contain 24% crude protein and 12 MJ/kg apparent metabolisable energy (AME). The diets included 10% or 20% lupin meal and, for each level of lupin, they were formulated in one of four ways: 1) no enzyme; 2) pectinase (1.4 U/g polygalacturonase and 0.2 U/g pectinesterase); 3) xylanase (1,4 endo-xylanase; 0.38 U/g); 4) combination of the above pectinase and xylanase treatments. The results indicated that, from age 28 days of age, both lupin content and enzyme treatment significantly (P < 0.05) affected chick performance. Compared with the no-enzyme control, enzyme treatments improved growth at 35 days by 45-50% (P < 0.05) and feed conversion ratio by 20-30% (P < 0.05) for both levels of lupin content. In addition, dry matter digestibility and apparent metabolizable energy were significantly improved by the combined enzyme treatment for both levels of lupin inclusion. We conclude that pectinase and xylanase can overcome the negative effects of the non-starch polysaccharides in lupin meal, improving the growth of quail chicks fed lupin-based diets, and that the enzymes work best when combined.
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酶处理提高日本鹌鹑对羽扇豆素饲粮的利用
在家禽中,饲粮中含有高浓度的非淀粉多糖限制了其生长速度和饲料转化率,并由于产生湿粪而造成健康和福利问题。这一问题正变得越来越重要,因为使用替代膳食蛋白质来源(如罗苹谷物)而不是鱼粉或豆粕来降低成本的压力越来越大。因此,我们测试了分解非淀粉多糖的酶是否能克服饲喂日本鹌鹑的以羽扇豆素为基础的日粮所带来的问题。18日龄雏鸡随机分为8个处理,每个重复3次,每个重复12只雏鸡(即每个处理36只)。饲喂粗蛋白质含量为24%、表观代谢能(AME)为12 MJ/kg的饲粮。饲粮中添加10%或20%的罗苹粕,每种水平的罗苹粕采用以下四种方式之一配制:1)不添加酶;2)果胶酶(1.4 U/g聚半乳糖醛酸酶和0.2 U/g果胶酯酶);3)木聚糖酶(1,4内切木聚糖酶;0.38 U / g);4)上述果胶酶与木聚糖酶联合处理。结果表明,从28日龄开始,卢平含量和酶处理对雏鸡生产性能均有显著影响(P < 0.05)。与无酶对照相比,酶处理可提高35 d生长45 ~ 50% (P < 0.05),饲料系数提高20 ~ 30% (P < 0.05)。此外,在两种添加水平下,复合酶处理均显著提高了干物质消化率和表观代谢能。由此可见,果胶酶和木聚糖酶可以克服豆粕中非淀粉多糖的负面影响,促进羽扇豆素饲粮鹌鹑雏鸡的生长,且两者结合使用效果最好。
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