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Effect of Source and Processing on Maize Grain Quality and Nutritional Value for Broiler Chickens: 2. Milling Technique and Particle Size

机译:原料和加工对肉鸡玉米籽粒品质和营养价值的影响:2.碾磨技术和粒度

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In a 2x2x3 factorial study, the effect of milling technique (hammer vs. roller) with differing particle sizes (fine or coarse) of maize from three sources (Downs, Emerald or Moree) on growth performance, ileal digestibility and intestinal microbial profiles of broiler chickens (from 1-21 days post-hatch) was investigated. A total of 420 day-old male Cobb chicks were randomly allocated to 12 treatments of 5 replicates (seven birds per replicate) in brooder cages set up in an environmentally controlledroom. The maize grain was finely ground using a hammer mill or roller mill with a 2 mm screen or coarsely ground through a 4 mm screen. Feed intake up to 7 days of age was higher (p<0.003) on the diet containing finely roller-milled grain than on the coarsely milled grain but no effect found on d21. Live weight was affected by the source of maize (p<0.04). The FCR to d21 was improved (p<0.042) on the Moree maize that was finely roller milled. The relative weight of proventriculus plus gizzard (p<0.01)and liver (pO.Ol) were higher in diets containing coarsely milled grain than finely milled grain at 7 but not 21 days. Nutrient digestibility was affected due to maize source (p<0.01) and particle size reduction (p<0.01). These results suggest that finegrinding some sources of maize would be beneficial in terms of improvement in FI, LW and weight of proventriculus and gizzard in early ages as well as nutrient digestibility at a later age.
机译:在2x2x3因子研究中,来自三种来源(唐斯,翡翠或莫里)的不同粒径(细或粗)玉米的碾磨技术(锤式或辊式)对肉鸡生长性能,回肠消化率和肠道微生物谱的影响对鸡(孵化后1-21天)进行了调查。在环境控制室中设置的育雏笼中,将总共420日龄的Cobb雄性小鸡随机分配到12个处理中,进行5个重复(每个重复七只鸟)的处理。使用锤磨机或辊磨机将玉米颗粒细磨至2 mm的筛网,或将粗粒磨碎至4 mm的筛网。含有细碾磨谷物的日粮中,至7天龄的饲料摄入量较高(p <0.003),但对d21没有影响。活体重受玉米来源的影响(p <0.04)。在经过细辊碾磨的Moree玉米上,FCR到d21的改善(p <0.042)。在第7天而不是第21天,含粗磨谷物的日粮中,前胃与胃izz的相对重量(p <0.01)和肝脏(p0.01)较高。营养成分的消化率受玉米来源(p <0.01)和粒径减小(p <0.01)的影响。这些结果表明,对玉米的某些来源进行细磨将有利于改善幼年的FI,LW,早幼粒和izz的重量以及晚年的养分消化率。

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