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Reduction of Soybean Meal Non-Starch Polysaccharides and α-Galactosides by Solid-State Fermentation Using Cellulolytic Bacteria Obtained from Different Environments

机译:豆粕非淀粉多糖和α半乳糖苷的还原固态发酵用纤维分解菌来自不同的环境中获得

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摘要

Soybean meal (SBM) is an important protein source in animal feed. However, the levels of SBM inclusion are restricted in some animal species by the presence of antinutritional factors (ANFs), including non-starch polysaccharides (NSPs) and α-galactosides (GOSs). The aim of this study was to reduce the soybean meal NSPs and GOSs by solid-state fermentation (SSF) using a combination of cellulolytic bacteria isolated from different environments (termites, earthworms, corn silage and bovine ruminal content). To analyse the key enzymatic activities, the isolates were grown in minimal media containing NSPs extracted from SBM. The selected bacterial strains belonged to the genera Streptomyces, Cohnella and Cellulosimicrobium. SSF resulted in a reduction of nearly 24% in the total NSPs, 83% of stachyose and 69% of raffinose and an increase in the protein content. These results suggest that cellulolytic bacteria-based SSF processing facilitates SBM nutritional improvement. In addition, the use of fermented SBM in animal diets can be recommended.
机译:豆粕(SBM)是动物饲料中重要的蛋白质来源。但是,由于抗营养因子(ANFs)的存在,包括非淀粉多糖(NSPs)和α-半乳糖苷(GOSs),某些动物物种中的SBM含量受到限制。这项研究的目的是通过结合使用从不同环境(白蚁,earth,玉米青贮饲料和牛瘤胃含量)分离出的纤维素分解细菌,通过固态发酵(SSF)来减少豆粕中的NSP和GOS。为了分析关键的酶活性,将分离物在含有从SBM中提取的NSP的基本培养基中生长。选定的细菌菌株属于链霉菌,Cohnella和纤维素纤维菌属。 SSF导致总NSP降低近24%,水苏糖83%和棉子糖69%,蛋白质含量增加。这些结果表明,基于纤维素分解细菌的SSF加工促进了SBM的营养改善。另外,建议在动物饮食中使用发酵的SBM。

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