Wang Mengyan, Ao Ling, Zeng Shan, Yang Jianping, Wang Chun, Wang Xia, Shen Caihong, Sun Yingxue
Department of Environmental Science and Engineering, Beijing Technology and Business University, Beijing, 100048, China.
Luzhou Laojiao Co. Ltd, Luzhou, 646699, China.
Fish Physiol Biochem. 2025 May 7;51(3):93. doi: 10.1007/s10695-025-01511-0.
The continuous high price of fishmeal has prompted the aquaculture industry to seek alternative protein sources. Distillers' dried grains with solubles (DDGS) possess significant utilization value as a plant-based protein, yet its substitution ratio is limited due to the anti-nutritional factors. This study aimed to assess the potential of compound bacteria-fermented DDGS as a protein source for aquatic feed. DDGS was fermented using complex bacteria, and the treatment group with the highest crude protein content after fermentation was used as the raw material for the experimental diets. Based on different replacement levels of hatching brine shrimp with DDGS, four dietary groups were established: D0, D10, D20, and D30. Each tank was stocked with 30 zebrafish, with three replicates per treatment group. Fish were fed twice daily, and the experiment lasted for 30 days. The main results are as follows: the inclusion of 10% fermented DDGS in the diet significantly enhanced superoxide dismutase and glutathione activities in both the gut and muscle tissue of zebrafish compared to the control group (D0). The relative abundance of the probiotic Cetobacterium exhibited a significant increase of 38% in the D10 group compared to the D0 group. A PICRUSt (Phylogenetic Investigation of Communities by Reconstruction of Unobserved States) study unveiled a substantial augmentation in the abundance of metabolic pathways, encompassing cofactor and vitamin metabolism as well as carbohydrate metabolism. In conclusion, the findings demonstrated that incorporating fermented DDGS into the diet significantly augmented the antioxidant capacity and disease resistance of zebrafish.
鱼粉持续高价促使水产养殖业寻求替代蛋白质来源。玉米酒糟及其可溶物(DDGS)作为一种植物性蛋白质具有显著的利用价值,但其替代率因抗营养因子而受限。本研究旨在评估复合菌发酵DDGS作为水产饲料蛋白质来源的潜力。用复合菌对DDGS进行发酵,并将发酵后粗蛋白含量最高的处理组用作实验饲料的原料。基于用DDGS替代卤虫无节幼体的不同水平,建立了四个饲料组:D0、D10、D20和D30。每个水族箱放养30条斑马鱼,每个处理组设三个重复。每天投喂两次,实验持续30天。主要结果如下:与对照组(D0)相比,饲料中添加10%发酵DDGS显著提高了斑马鱼肠道和肌肉组织中的超氧化物歧化酶和谷胱甘肽活性。与D0组相比,D10组中益生菌鲸杆菌的相对丰度显著增加了38%。一项PICRUSt(通过重建未观察状态对群落进行系统发育研究)研究表明,包括辅因子和维生素代谢以及碳水化合物代谢在内的代谢途径的丰度大幅增加。总之,研究结果表明,在饲料中添加发酵DDGS可显著提高斑马鱼的抗氧化能力和抗病能力。