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Effects of inclusion of Bacillus subtilis (Gallipro) to energy- and protein-reduced diet on growth performance, nutrient digestibility, and meat quality and gas emission in broilers

机译:枯草芽孢杆菌(gallipro)将枯草芽孢杆菌(gallipro)含有蛋白质降低饮食对肉鸡生长性能,营养消化率和肉质排放的影响

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A total of 816 1-day-old Ross 308 broiler chicks with an average initial body weight (BW) of 44.01 +/- 0.62g were used in a 6-wk feeding trial. Birds were blocked based on BW and randomly allotted to 1 of 6 dietary treatments (8 replicate pens per treatment with 17 birds per replication pen) in a 3 x 2 factorial arrangement with 3 levels of metabolizable energy (ME) and crude protein (CP) with constant amino acid (100% ME and CP, 98.8% ME and CP, and 97.6% ME and CP) supplemented with or without 500g/ton of Bacillus-based probiotics. As a result of this study, a significant reduction (P 0.05) in BW and an increment in feed conversion rate (FCR) were observed with the reduction in the diet density during finisher and overall experiment periods. During the growing and finishing periods, the birds fed probiotic supplemented diets were heavier (P 0.05) than those fed diets without probiotic. The FCR was also improved (P 0.05) in probiotic supplemented groups during these periods, but feed intake (FI) remained unaffected compared to birds without probiotic supplemented diets. The apparent total tract digestibility (ATTD) of dry matter (DM) tended (P = 0.051) to be lower in ME- and CP-reduced diets compared with control. In addition, the ATTD of nitrogen (N) and energy was significantly lower (P 0.05) in ME and CP-reduced diets than the control diet. A trend in the reduction (P = 0.059) of NH3 gas emission from the excreta was observed for birds fed ME- and CP-reduced diets compared with control diets. In addition, birds fed probiotic supplemented diets also showed reduced (P 0.05) NH3 emission compared to those fed diet without probiotic. In conclusion, inclusion of probiotic to ME- and CP-reduced diet improved performance, had comparable effect on meat quality, and reduced ammonia emission from the excreta. No interactive effects of diet types and probiotic were observed.
机译:共有816名1岁的罗斯308肉鸡雏鸡,平均初始体重(BW)为44.01 +/- 0.62g,用于6周饲养试验。基于BW封闭鸟类,并随机分配给6个膳食处理中的1个(每次复制笔的17只鸟类的8张复制笔),以3×2因子排列,具有3级可代谢能量(ME)和粗蛋白(CP)恒定的氨基酸(100%Me和Cp,98.8%Me和Cp,97.6%Me和Cp)补充有或没有500g /吨的基于芽孢杆菌的益生菌。由于该研究的结果,通过在整理期间减少饮食密度和整体实验期间,观察到BW中的大幅减少(P <0.05)和饲料转化率(FCR)的增量。在不断增长和完成期间,喂养益生菌补充饮食的鸟类比没有益生菌的喂食饮食更重(P <0.05)。在这些时期,FCR在益生菌补充基团中也得到改善(p <0.05),但与没有益生菌补充饮食的鸟类相比,饲料摄入量(FI)仍未受到影响。与对照相比,干物质(DM)的表观总介质(DM)的干物质(DM)趋于(p = 0.051),并降低饮食。此外,氮气(N)和能量的attD在ME和CP减少的饮食中显着降低(P <0.05)。与对照饮食相比,针对喂养者和CP减少饮食的鸟类观察到来自ExcreTa的NH3气体排放的减少(P = 0.059)的趋势。此外,与没有益生菌的喂食相比,喂养益生菌补充饮食的禽喂养饮食也表现出降低(P <0.05)NH 3发射。总之,将益生菌纳入我和CP减少的饮食改善的性能,对肉质的效果具有相当的影响,并从排泄物中减少了氨氨。没有观察到饮食类型和益生菌的互动效果。

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