毕赤酵母
生物膜
生物催化
发酵
化学
催化作用
过程(计算)
生化工程
食品科学
组合化学
生物化学
生物
细菌
计算机科学
重组DNA
遗传学
离子液体
工程类
基因
操作系统
作者
Tianpeng Chen,Shimeng Wang,Huanqing Niu,Guanjia Yang,Sinan Wang,Yuqi Wang,Chaowei Zhou,Bin Yu,Pengpeng Yang,Wenjun Sun,Dong Liu,Hanjie Ying,Yong Chen
摘要
Galactooligosaccharides (GOS) are one of the most important functional oligosaccharide prebiotics. The surface display of enzymes was considered one of the most excellent strategies to obtain these products. However, a rough industrial environment would affect the biocatalytic process. The catalytic process could be efficiently improved using biofilm-based fermentation with high resistance and activity. Therefore, the combination of the surface display of β-galactosidase and biofilm formation in Pichia pastoris was constructed. The results showed that the catalytic conversion rate of GOS was up to 50.3% with the maximum enzyme activity of 5125 U/g by screening the anchorin, and the number of the continuous catalysis batches was up to 23 times. Thus, surface display based on biofilm-immobilized fermentation integrated catalysis and growth was a co-culture system, such that a dynamic equilibrium in the consolidated integrative process was achieved. This study provides the basis for developing biofilm-based surface display methods in P. pastoris during biochemical production processes.
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