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Net energy energy utilization and nitrogen and energy balance affected by dietary pea supplementation in broilers

机译:受肉鸡饮食豌豆补充影响的净能量能源利用和氮气和能量平衡

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摘要

Pea starch consists predominantly of C-type of amylopectin chain which is more resistant to digestive enzymes than A-type of starch thus slowly digested in poultry. It was hypothesized that the presence of slowly digested pea starch in broiler diets will increase net energy and the efficiency of energy utilization in broilers. Two experiments were performed to investigate starch digestibility of pea at different incubation times (in vitro study) and the effect of dietary pea on heat increment and net energy in broilers using an open-circuit respiratory calorimetry system (in vivo study). One-day-old Ross 308 male broilers were fed a common starter crumble from d 1 to 10 and standard grower diets thereafter. At d 21, birds were transferred to the chambers each housing 2 birds. Each treatment was replicated 6 times with 2 identical runs of 3 replicates per treatment. A wheat-soybean meal-based diet was used as a control and the treatment diet contained 500 g of pea/kg pea. In vitro study showed that pellet processing increased (P < 0.001) starch digestibility, particularly at shorter times for wheat and a much larger response for pea. Birds offered the pea-based diet had lower (P = 0.002) feed intake, lower (P = 0.020) body weight gain, but a similar (P > 0.05) FCR compared to those offered the wheat-based diet. Net energy (NE) and apparent metabolizable energy (AME) values were higher in the pea-based diet than in the wheat-based diet (P = 0.037 for NE and P = 0.018 for AME). Heat production, respiratory quotient, heat increment of feed, efficiency of utilization of gross energy for AME, and efficiency of utilization of AME for NE did not differ (P > 0.05) between the 2 treatments. There was no effect (P > 0.05) of pea on the total tract digestibilities of dry matter, crude protein and ash, but the total tract digestibility of starch was higher (P = 0.022) in the pea-based diet compared to the wheat-based diet. This study provides insight into the energy metabolism of broilers offered a pea-based diet and indicates that dietary pea supplementation increases dietary AME and NE but has no effect on heat increment of feed and the efficiency of energy utilization in broilers.
机译:豌豆淀粉主要由C型支链蛋白链组成,其比淀粉型更耐消化酶,从而在家禽中慢慢消化。假设肉鸡饮食中缓慢消化的豌豆淀粉的存在将提高培养净能量和能量利用效率。进行两次实验以研究不同孵育时间(体外研究)在不同孵育时间(体外研究)的淀粉消化率和使用开路呼吸量热法(体内研究中的肉鸡热增量和净能量的影响。一天历史的罗斯308雄性肉鸡喂养来自D 1至10的常见起动器崩溃,然后此后标准种植者饮食。在D 21,将鸟类转移到每个壳体2鸟的腔室中。每次治疗两种相同的3次重复,每次待遇6次。使用小麦大豆膳食饮食作为对照,治疗饮食含有500克豌豆/ kg豌豆。体外研究表明,颗粒加工增加(p <0.001)淀粉消化率,特别是小麦的较短时间和对豌豆的更大反应。鸟类提供豌豆的饮食较低(p = 0.002)进料摄入,较低(p = 0.020)体重增加,但与那些提供了类似的(p> 0.05)Fcr,而这些饮食相比提供了小麦饮食。豌豆的饮食中净能量(NE)和表观代理能量(AME)值高于小麦饮食(P = 0.037的NE和P = 0.018的ame)。热量生产,呼吸商,饲料的热量增量,ame总能量的利用效率,以及2种治疗之间的ame的ame的利用效率没有不同(p> 0.05)。对干物质,粗蛋白质和灰分的总介质消化率没有影响(p> 0.05),但与小麦相比,豌豆饮食中淀粉的总沟槽消化率更高(p = 0.022)基于饮食。本研究提供了深入了解肉鸡的能量代谢提供了豌豆的饮食,并表明膳食豌豆补充剂增加了膳食AME和NE,而是对饲料的热量增量和肉鸡的能量利用效率没有影响。

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