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首页> 外文期刊>Journal of molecular catalysis, B. Enzymatic >Fructooligosaccharides and p-fructofuranosidase production by Aspergillus japonicus immobilized on lignocellulosic materials
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Fructooligosaccharides and p-fructofuranosidase production by Aspergillus japonicus immobilized on lignocellulosic materials

机译:固定在木质纤维素材料上的日本曲霉生产低聚果糖和对果糖呋喃糖苷酶

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摘要

This work describes the fructooligosaccharides (FOS) and beta-fructofuranosidase (FFase) production from sucrose (200 g/1) by Aspergillus japonicus ATCC 20236 immobilized on different lignocellulosic materials including brewer's spent grain, wheat straw, corn cobs, coffee husks, cork oak, and loofa sponge. Trans-fructosylating(Ut) and hydrolyzing (Uh) activities of FFase were also determined. The FOS production and FFase activity ranged from 128.35 to 138.73 g/1, and 26.83 to 44.81 U/ml, respectively, for cells immobilized in the different carriers. Corn cobs was the best support material since gave the highest results of microorganism immobilization (1.49 g/g carrier), FOS and FFase production, with FOS productivity (6.61 g/1 h) and yield (0.66 g/g based on total substrate; 0.73 g/g based on consumed substrate) higher than those obtained by free cells system. Moreover, the ratio U_t/U_h of FFase, parameter of importance for elevated FOS production, was greater for cells immobilized in corn cobs than for free cells. Such results demonstrated that corn cobs can be successfully used as carrier for immobilization of the fungus A. japonicus, for the production of FOS and FFase.
机译:这项工作描述了由日本曲霉(Aspergillus japonicus)ATCC 20236从蔗糖(200 g / 1)生产的低聚果糖(FOS)和β-果糖呋喃糖苷酶(FFase)固定在不同的木质纤维素材料上,包括啤酒糟,麦秆,玉米芯,咖啡壳,软木橡树和loofa海绵。还确定了FFase的反式果糖基化(Ut)和水解(Uh)活性。对于固定在不同载体中的细胞,FOS产生和FFase活性分别为128.35至138.73 g / 1和26.83至44.81 U / ml。玉米芯是最好的支持材料,因为其固定化微生物(1.49 g / g载体),生产FOS和FFase的结果最高,FOS生产率(6.61 g / 1 h)和产量(基于总底物为0.66 g / g);比通过游离细胞系统获得的那些高0.73 g / g(基于消耗的底物)。此外,对于固定在玉米芯中的细胞而言,FFase的比率U_t / U_h(对于提高FOS产量的重要参数)大于游离细胞。这样的结果表明,玉米芯可以成功地用作固定真菌A.japonicus的载体,用于生产FOS和FFase。

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