Nutrition Division, Council of Agriculture-Livestock Research Institute, Taiwan; Ph.D. Program of Agriculture Science, National Chiayi University, Taiwan.
Ph.D. Program of Agriculture Science, National Chiayi University, Taiwan; Department of Animal Science, National Chiayi University, Taiwan.
Poult Sci. 2022 Sep;101(9):102027. doi: 10.1016/j.psj.2022.102027. Epub 2022 Jun 24.
This study is aimed to select optimum keratin degradation ability from Bacillus strains for feather meal-soybean meal fermentation, and favorably water content for the strain during fermentation of feather meal-soybean meal, and finally investigate the effects of the fermented feather meal-soybean meal product (FFSMP) on growth performance, carcass trait, clinical blood biochemistry, and intestinal morphology of broilers. Thirty-six bacteria strains from soil, sewage pool, and feather waste were screened and selected Bacillus subtilis var. natto N21 (N21), B. subtilis CU14 (CU14), and B. amyloliquefaciens CU33 (CU33) with better keratinase activity and feather-degrading rate. The result of trial 1 showed that the FFSMP produced by CU33 had the optimum physiochemical characterizations, amino acid composition and feeding performance for broilers. Hence the effects of water content (45, 50, 55, and 60%) on FFMSP fermentation of CU33 were investigated in trial 2. Result showed that pH value, counts of Bacillus-like bacteria, γ-PGA, viscosity, surfactin yield and odor all significantly increased according to the water content (P < 0.05). The protease activity reached significantly highest in the 55% and 60% water content groups (P < 0.01). The broilers performance of 55% and 60% water content group were significantly higher than control group (P < 0.05) in weight gain (WG), feed intake (b) at 0 to 21-d-old and the WG, feed conversion ratio (FCR), and production efficiency factor at 0 to 35-d-old, and could reach the similar growth performance as fish meal group (P > 0.05). The fermentation groups significantly decreased urea nitrogen (P < 0.05) and increased creatinine (P < 0.05) in the blood. The fermentation groups also significantly decreased the crypt depth in the duodenum (P < 0.05) and increased villus height to crypt depth ratio of the duodenum (P < 0.05). In conclusion, CU33 shows the best degradation rate for feather and keratinase activity, and the FFSMP with a water content of 50% to 60% during fermentation is suggested. Diets supplemented with 5% FFSMP can promote the growth of broilers by improving the morphology of the duodenum and achieve the feeding effect of high-quality fish meal.
本研究旨在从芽孢杆菌菌株中选择最适角蛋白降解能力,用于羽毛粉-豆粕发酵,并优化菌株在发酵羽毛粉-豆粕过程中的最佳含水量,最终研究发酵羽毛粉-豆粕产品(FFSMP)对肉鸡生长性能、屠宰性能、临床血液生化和肠道形态的影响。从土壤、污水池和羽毛废物中筛选出 36 株细菌,筛选出枯草芽孢杆菌 var。纳豆 N21(N21)、枯草芽孢杆菌 CU14(CU14)和解淀粉芽孢杆菌 CU33(CU33),这三种菌株角蛋白酶活性和羽毛降解率较高。试验 1 的结果表明,CU33 生产的 FFSMP 具有最适的理化特性、氨基酸组成和肉鸡的饲养性能。因此,在试验 2 中研究了 CU33 发酵羽毛粉的含水量(45%、50%、55%和 60%)对其的影响。结果表明,pH 值、芽孢杆菌样细菌计数、γ-PGA、粘度、表面活性剂产量和气味均随含水量的增加而显著增加(P < 0.05)。蛋白酶活性在 55%和 60%水含量组中达到显著最高水平(P < 0.01)。55%和 60%水含量组的肉鸡在 0 至 21 日龄时的体重增重(WG)、采食量(b)以及 0 至 35 日龄时的 WG、饲料转化率(FCR)和生产效率因子均显著高于对照组(P < 0.05),且可达到与鱼粉组相似的生长性能(P > 0.05)。发酵组血液中尿素氮显著降低(P < 0.05),肌酐显著升高(P < 0.05)。发酵组十二指肠隐窝深度显著降低(P < 0.05),十二指肠绒毛高度与隐窝深度比值显著升高(P < 0.05)。综上所述,CU33 对羽毛和角蛋白酶的降解率最高,建议在发酵过程中保持 50%至 60%的含水量。日粮中添加 5%的 FFSMP 可通过改善十二指肠形态促进肉鸡生长,达到优质鱼粉的饲养效果。