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77 Performance of growing pigs fed wheat-based diets containing wheat millrun and a multi-carbohydrase enzyme

机译:77种植猪的饲料喂养小麦米兰和多碳水化酶酶的小麦饮食

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摘要

The inclusion of wheat millrun, a low-cost milling co-product, into swine rations is limited by high non-starch polysaccharide content. The objective of these trials was to determine the response of growing pigs to wheat millrun inclusion, with or without, a multi-carbohydrase enzyme (xylanase, cellulase, amylase, glucanase, invertase). In Exp1, the effects of millrun inclusion and multi-carbohydrase on nutrient digestibility were investigated. The six treatments, arranged as a 3x2 factorial, included millrun (0, 15 or 30%) and enzymes (0 or 1 mg/kg) as main effects. Barrows (n = 48; 60.2±2.2 kg) were housed individually and fed 3×maintenance for 11d. Feces and urine were collected d8-11. In Exp2, 4 treatments (0 or 30% millrun and 0 or 1 mg/kg enzyme; 2x2 factorial) were fed to 180 pigs (60.2±2.2 kg) housed in groups of 5 until they reached 125 kg BW. The diets were isonitrogenous while energy was reduced in the millrun diets. In Exp1, apparent total-tract digestibility (ATTD) of energy and N, and digestible energy (DE) content, declined linearly (87.3 to 81.5%; 86.3 to 83.5%; 3.86 to 3.68 Mcal DE/kg DM, respectively; P < 0.01) with increasing millrun inclusion. ATTD of energy was reduced by the inclusion of the enzymes (85.0 to 84.2%; P = 0.05) but there was no effect on DE content, or N ATTD (P > 0.10). In Exp2, ADG and G:F were reduced in pigs fed millrun (P < 0.05) while pigs fed diets supplemented with enzymes had reduced G:F during the initial 14d. There was no effect of millrun or enzyme on ADFI or days to market (P > 0.10). No interactions were detected between millrun and enzyme in either Exp1 or Exp2 (P > 0.10). In conclusion, reduced ADG and energy and N digestibility, were observed with the inclusion of 30% wheat millrun in diets for growing pigs, regardless of multi-carbohydrase enzyme inclusion.
机译:将小麦Millrun(一种低成本研磨的共同产品)包含在猪口粮中受到高非淀粉多糖含量的限制。这些试验的目的是确定生长猪生长猪对小麦米兰包装,有或没有多碳水化合物酶(木聚糖酶,纤维素酶,淀粉酶,葡聚糖酶,转化酶)。在EXP1中,研究了米兰含有和多碳水化酶对营养消化率的影响。六种处理,被排列为3x2因子,包括Millrun(0,15或30%)和酶(0或1mg / kg)作为主要效果。单独储能(n = 48; 60.2±2.2千克),并喂食3×11d的3×维护。收集了粪便和尿液的D8-11。在Exp2中,将4种处理(0或30%米兰和0或1mg / kg酶; 2x2因子)送入180只猪(60.2±2.2千克),其组成5组,直至它们达到125 kg bw。饮食中的饮食是不生命的,而Millerrun饮食中的能量降低。在Exp1中,能量和N的表观总介质消化率(ATTD)和可消化能量(DE)含量下降(87.3%至81.5%; 86.3至83.5%; 3.86至3.68 MCAL DE / KG DM; P < 0.01)随着米兰夹杂物的增加。通过包含酶(85.0至84.2%; P = 0.05),降低了能量的attd,但对DE含量或N ATTD没有影响(P> 0.10)。在EXP2中,ADG和G:F在饲喂Millrun的猪中减少(P <0.05),而在初始14d期间补充有酶的饲料的猪喂食饮食。米兰或酶对ADFI或MATTES对市场的影响没有影响(P> 0.10)。在EXP1或EXP2中Millrun和酶之间没有检测到不同的相互作用(P> 0.10)。总之,由于多碳水化酶酶包含,在饮食中包含30%的小麦米兰,观察到ADG和能量和N消化率降低,无论多碳水化酶酶夹杂物包列。

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