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Brewer's spent grain: Characterization and standardization procedure for the enzymatic hydrolysis by Bacillus cereus strain

机译:布鲁尔的废谷物:蜡状芽孢杆菌菌株酶解的表征和标准化程序

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摘要

An important way to reuse agroindustrial by-products and to produce added-value products consists of the production of protein hydrolysates. In the current study, we used Brewer's spent grain (BSG), mainly because of its availability and cost, as a substrate for the enzymatic hydrolysis by Bacillus cereus. First, the physicochemical and microbiological characterization of BSG batches from three varieties was carried out. Furthermore, the optimal fermentation upstream processes for enzymatic hydrolysis by B. cereus were defined. Finally, the ability of B. cereus to hydrolyze different fractions of BSG was analyzed and possible synergistic effects of this bacterium along with other proteolytic bacteria were also investigated. Results showed that the naturally associated microflora was predominantly thermophilic aerobic bacteria and the drying process was the better alternative for BSG preservation. Water, lipids, and ash content differed significantly among the three varieties; however, no statistically significant differences were found in the protein content among them. After BSG characterization studies, the following protocol was set to obtain the fermentation substrate (FS): drying at 60°C for 24-48 H; sieving, grinding, and polyphenol extraction with an alcohol-water solution; and finally autoclaving. A synergistic effect was observed when B. cereus was inoculated with Pseudomonas strains in FS.
机译:重复利用农用工业副产品和生产增值产品的重要方法是蛋白质水解产物的生产。在当前的研究中,我们使用Brewer的废谷物(BSG)(主要是由于其可用性和成本)作为蜡状芽孢杆菌进行酶促水解的底物。首先,对三个品种的BSG批次进行了理化和微生物学表征。此外,确定了蜡状芽孢杆菌酶促水解的最佳发酵上游工艺。最后,分析了蜡状芽孢杆菌水解BSG不同部分的能力,并且还研究了该细菌与其他蛋白水解细菌的协同作用。结果表明,与自然相关的菌群主要是嗜热的需氧菌,而干燥过程是保存BSG的更好选择。在三个品种中,水分,脂质和灰分含量存在显着差异。然而,它们之间的蛋白质含量没有统计学上的显着差异。经过BSG表征研究后,设置以下方案以获得发酵底物(FS):在60°C下干燥24-48 H;用酒精水溶液过筛,研磨和提取多酚;最后进行高压灭菌。在FS中用蜡假单胞菌菌株接种蜡状芽孢杆菌时,观察到协同作用。

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