Suppr超能文献

双发酵豆粕完全替代肉鸡日粮中的豆粕,对生产性能、消化率、氨基酸转运体和肉的营养价值产生有利影响。

Double-Fermented Soybean Meal Totally Replaces Soybean Meal in Broiler Rations with Favorable Impact on Performance, Digestibility, Amino Acids Transporters and Meat Nutritional Value.

作者信息

Abdel-Raheem Sherief M, Mohammed El Said Yehia, Mahmoud Rania Elsaid, El Gamal Mahmoud Fathy, Nada Hend S, El-Ghareeb Waleed Rizk, Marzok Mohamed, Meligy Ahmed M A, Abdulmohsen Mohamad, Ismail Hesham, Ibrahim Doaa, Kishawy Asmaa T Y

机构信息

Department of Public Health, College of Veterinary Medicine, King Faisal University, Al-Ahsa, Hofuf 31982, Saudi Arabia.

Department of Animal Nutrition and Clinical Nutrition, Faculty of Veterinary Medicine, Assiut University, Assiut 71526, Egypt.

出版信息

Animals (Basel). 2023 Mar 11;13(6):1030. doi: 10.3390/ani13061030.

Abstract

Inclusion of microbial fermented soybean meal in broiler feed has induced advantageous outcomes for their performance and gastrointestinal health via exhibiting probiotic effects. In this study, soybean meal (SBM) was subjected to double-stage microbial fermentation utilizing functional metabolites of fungi and bacteria. In broiler diet, DFSBM replaced SBM by 0, 25, 50 and 100%. DFSBM was reported to have higher protein content and total essential, nonessential and free amino acids (increased by 3.67%, 12.81%, 10.10% and 5.88-fold, respectively, compared to SBM). Notably, phytase activity and lactic acid bacteria increased, while fiber, lipid and trypsin inhibitor contents were decreased by 14.05%, 38.24% and 72.80%, respectively, in a diet containing 100% DFSBM, compared to SBM. Improved growth performance and apparent nutrient digestibility, including phosphorus and calcium, and pancreatic digestive enzyme activities were observed in groups fed higher DFSBM levels. In addition, higher inclusion levels of DFSBM increased blood immune response (IgG, IgM, nitric oxide and lysozyme levels) and liver antioxidant status. Jejunal amino acids- and peptide transporter-encoding genes (LAT1, CAT-1, CAT-2, PepT-1 and PepT-2) were upregulated with increasing levels of DFSBM in the ration. Breast muscle crude protein, calcium and phosphorus retention were increased, especially at higher inclusion levels of DFSBM. Coliform bacteria load was significantly reduced, while lactic acid bacteria count in broiler intestines was increased with higher dietary levels of DFSBM. In conclusion, replacement of SBM with DFSBM positively impacted broiler chicken feed utilization and boosted chickens' amino acid transportation, in addition to improving the nutritional value of their breast meat.

摘要

在肉鸡饲料中添加微生物发酵豆粕通过发挥益生菌作用,对肉鸡的生长性能和胃肠道健康产生了有利影响。在本研究中,利用真菌和细菌的功能性代谢产物对豆粕进行了双阶段微生物发酵。在肉鸡日粮中,双阶段发酵豆粕分别替代豆粕0%、25%、50%和100%。据报道,双阶段发酵豆粕的蛋白质含量以及必需氨基酸、非必需氨基酸和游离氨基酸总量更高(与豆粕相比,分别增加了3.67%、12.81%、10.10%和5.88倍)。值得注意的是,与豆粕相比,在含有100%双阶段发酵豆粕的日粮中,植酸酶活性和乳酸菌数量增加,而纤维、脂质和胰蛋白酶抑制剂含量分别降低了14.05%、38.24%和72.80%。在饲喂较高双阶段发酵豆粕水平的组中,观察到生长性能提高、表观养分消化率(包括磷和钙)以及胰腺消化酶活性提高。此外,较高水平的双阶段发酵豆粕添加量提高了血液免疫反应(IgG、IgM、一氧化氮和溶菌酶水平)和肝脏抗氧化状态。随着日粮中双阶段发酵豆粕水平的增加,空肠中氨基酸和肽转运蛋白编码基因(LAT1、CAT-1、CAT-2、PepT-1和PepT-2)上调。胸肌粗蛋白、钙和磷的保留量增加,尤其是在较高双阶段发酵豆粕添加水平时。大肠菌负荷显著降低,而随着日粮中双阶段发酵豆粕水平的提高,肉鸡肠道中的乳酸菌数量增加。总之,用双阶段发酵豆粕替代豆粕对肉鸡饲料利用率产生了积极影响,除了提高胸肉营养价值外,还促进了鸡的氨基酸运输。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa17/10044553/1a907882d818/animals-13-01030-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验