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Effects of Bacillus subtilis var. natto and Saccharomyces cerevisiae mixed fermented feed on the enhanced growth performance of broilers

机译:枯草芽孢杆菌变种的影响纳豆和酿酒酵母混合发酵饲料对提高肉鸡生长性能的影响

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Bacillus subtilis var. natto N21 (Bac; for greater proteolytic capacity) and Saccharomyces cerevisiae Y10 (Sac; for greater acidic capacity) were applied to produce a 2-stage combined fermentation feed. This study investigated whether the enhancement of Bac+Sac fermented feed on broiler growth performance was due to the probiotics per se or due to the fermentation process. Trial 1 included 1-d-old broiler chicks (n=144) randomly assigned to control, water added (same as in the fermentation feed, 23%), and Bac+Sac fermented feed (FBac+Sac) treatments with 4 replicates. Trial 2 included 21-d-old broiler chickens (n=12) assigned into control and FBac+Sac groups for a metabolic trial for nutrient availability. Trial 3 included 1-d-old male broiler chicks (n=216) randomly assigned into 6 treatments with 3 replicates. Treatments included a control, Sac fermented feed (FSac), FBac+Sac, Bac powder (PBac), Sac powder (PSac), and Bac+Sac powder (PBac+Sac). The results from trial 1 showed that FBac+Sac increased BW and feed intake (P<0.05) in 21- and 39-d-old chickens. The water-added group showed decreased BW, weight gain, and feed intake (P<0.05). Trial 2 showed that FBac+ Sac increased gross energy availability (P<0.05). Trial 3 showed that FBac+Sac increased 21- and 39-d-old BW and weight gain (P<0.05). Diets supplemented with probiotic powder or fermented with Sac did not improve broiler growth performance (P>0.05). The growth performance improvement of the FBac+Sac treatment was probably not due to the added water, probiotic powder inclusion, or through single-strain fermentation, but due to the 2-stage fermentation process using Bac and Sac strains.
机译:枯草芽孢杆菌变种纳豆N21(Bac;用于更大的蛋白水解能力)和啤酒酵母Y10(Sac;用于更大的酸性能力)用于生产两阶段组合发酵饲料。这项研究调查了Bac + Sac发酵饲料对肉鸡生长性能的提高是由于益生菌本身还是由于发酵过程引起的。试验1包括随机分配给对照组的1日龄肉鸡(n = 144),加水(与发酵饲料相同,为23%)和Bac + Sac发酵饲料(FBac + Sac)处理(一式四份)。试验2包括21 d大的肉鸡(n = 12),分为对照组和FBac + Sac组以进行营养素代谢试验。试验3包括1d大雄性肉鸡小鸡(n = 216),随机分配到6种处理中,重复3次。处理包括对照,Sac发酵饲料(FSac),FBac + Sac,Bac粉(PBac),Sac粉(PSac)和Bac + Sac粉(PBac + Sac)。试验1的结果表明,FBac + Sac增加了21日龄和39日龄鸡的体重和采食量(P <0.05)。加水组的体重,体重增加和采食量减少(P <0.05)。试验2显示FBac + Sac增加了总能量利用率(P <0.05)。试验3显示FBac + Sac可增加21和39d体重和体重增加(P <0.05)。补充益生菌粉或Sac发酵的日粮不能改善肉鸡的生长性能(P> 0.05)。 FBac + Sac处理的生长性能改善可能不是由于添加水,添加益生菌粉或通过单菌株发酵,而是由于使用Bac和Sac菌株的2阶段发酵过程。

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