纤维素
食品科学
化学
吸附
结晶度
多糖
纤维
发酵
拉伤
细菌纤维素
分子
亚硝酸盐
生物化学
有机化学
生物
解剖
结晶学
硝酸盐
作者
Jingyu Si,Chaoran Yang,Wenjie Ma,Yi Chen,Jianhua Xie,Xiaoting Qin,Xiaobo Hu,Qiang Yu
标识
DOI:10.1016/j.ijbiomac.2022.08.092
摘要
In our study, two high efficiency cellulose degrading strains were screened, isolated and identified as Cochliobolus kusanoi and Aspergillus puulaauensis by 18S rDNA gene sequencing. In addition, the composite microbial system was constructed to develop the synergistic effect among different strains. Under the optimum conditions, the yield of soluble dietary fiber from tea residues by mixed fermentation method (MF-SDF) dramatically increased compared to single strain fermentation. The structural analysis demonstrated that all samples possessed the representative infrared absorption peaks of polysaccharides, whereas MF-SDF revealed more loose structure, lower crystallinity and smaller molecular size. For the adsorption capacities indexes, MF-SDF also owned the highest adsorbing capacity for the water molecule, oil molecule, cholesterol molecule and nitrite ion. Overall, our data showed that mixed fermentation method could be better choices to improve the functional properties of dietary fiber, and screening of cellulose degrading strains could provide new thinkings for the study of dietary fiber modification and realize high-quality utilization of crop residues.
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