Zhao Manqi, Chen Xing, Li Shuang, Liu Guohua, Chen Zhimin, Yang Peilong, Meng Kun, Zheng Aijuan
Key Laboratory for Feed Biotechnology of the Ministry of Agriculture and Rural Affairs, Institute of Feed Research, Chinese Academy of Agriculture Sciences, Beijing 100081, China.
Tianjin Biofeed Technology Co., Ltd., Beijing 100094, China.
Poult Sci. 2025 Aug 8;104(11):105670. doi: 10.1016/j.psj.2025.105670.
This experiment aims to investigate the physicochemical properties of fermented soybean meal (FSBM) and its effects on the growth and development of broilers when used as a substitute for soybean meal (SBM). The process optimization of FSBM was based on indicators such as particle size, moisture content, temperature, and the amounts of protease and microbial agents added. The physicochemical indicators of the FSBM meal were measured accordingly. On this basis, 320 one-day-old AA broilers were randomly divided into 4 treatment groups, with each group having 8 replicates. The treatment groups were: control (CON) group was fed a basal diet. The experimental group replaced 5 % (FSBM-1), 7.5 % (FSBM-2), and 10 % (FSBM-3) of SBM with FSBM. The trial period lasted for 42 d. The results indicate that the crude protein (CP) and acid-soluble protein (ASP) content of FSBM have significantly increased. Additionally, the amino acid content of FSBM surpasses that of SBM. Furthermore, the peak area percentage (PAP), number average molecular weight (NAMW), and weight average molecular weight (WAMW) for molecules below 5000 Da have shown significant increases (P<0.05). FSBM also significantly reduces anti-nutritional factors, including raffinose, stachyose, glycinin, etc. In the broiler chicken experiment, the ADG of the FSBM-1 group from 22 to 42 d and from 1 to 42 d was significantly increased (P<0.05), while the F/G was significantly reduced (P<0.05). Additionally, compared to the CON group, the nutrient apparent metabolism rates of dry matter (DM), crude protein (CP), and energy (EN) in the diet were also significantly enhanced (P<0.05). The comparison of broiler chickens in the FSBM-1 group at 21 d and 42 d shows a significant decrease (P<0.05) in the crypt depth (CD), while the villus height to crypt depth (V/C) significantly increased (P<0.05). In summary, fermentation can significantly reduce the anti-nutritional factors present in SBM and enhance feed quality. Replacing 5% of SBM with FSBM can notably improve the growth performance and intestinal morphology of broiler chickens.
本实验旨在研究发酵豆粕(FSBM)的理化性质及其作为豆粕(SBM)替代品时对肉鸡生长发育的影响。FSBM的工艺优化基于粒度、水分含量、温度以及蛋白酶和微生物制剂添加量等指标。据此测定了FSBM粕的理化指标。在此基础上,将320只1日龄AA肉鸡随机分为4个处理组,每组8个重复。处理组分别为:对照组(CON)饲喂基础日粮。实验组用FSBM分别替代5%(FSBM - 1)、7.5%(FSBM - 2)和10%(FSBM - 3)的SBM。试验期持续42天。结果表明,FSBM的粗蛋白(CP)和酸溶蛋白(ASP)含量显著增加。此外,FSBM的氨基酸含量超过了SBM。而且,分子量低于5000 Da的分子的峰面积百分比(PAP)、数均分子量(NAMW)和重均分子量(WAMW)均显著增加(P<0.05)。FSBM还显著降低了包括棉子糖、水苏糖、大豆球蛋白等抗营养因子。在肉鸡实验中,FSBM - 1组在22至42天和1至42天的平均日增重(ADG)显著增加(P<0.05),而料重比(F/G)显著降低(P<0.05)。此外,与CON组相比,日粮中干物质(DM)、粗蛋白(CP)和能量(EN)的养分表观代谢率也显著提高(P<0.