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Maximization of fructooligosaccharides and β-fructofuranosidase production by Aspergillus japonicus under solid-state fermentation conditions

机译:固态发酵条件下日本曲霉产生的低聚果糖和β-果糖呋喃糖苷酶的产量最大化

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摘要

The conditions of temperature, moisture content, and inoculum rate able to maximize the production of fructooligosaccharides (FOS) and β-fructofuranosidase (FFase) enzyme by solid-state fermentation were established. Fermentation assays were performed using the support material (coffee silverskin) moistened to 60, 70, or 80 % with a 240-g/l sucrose solution and inoculated with a spore suspension of Aspergillus japonicus to obtain 2 × 10 5, 2 × 10 6, or 2 × 10 7 spores/gram dry material. The fermentation runs were maintained under static conditions at 26, 30, or 34 °C during 20 h. The moisture content did not influence the FOS and FFase production; however, temperature between 26 and 30 °C and inoculum rate of approximately 2 × 10 7 spores/gram dry material maximized the results (FOS = 208.8 g/l with productivity of 10.44 g/l h; FFase = 64.12 units U/ml with productivity of 4.0 U/ml h). These results are considerably higher than those obtained under no optimized fermentation conditions and represent an important contribution for the establishment of a new industrial process for FOS and FFase production.
机译:建立了能够通过固态发酵最大化生产低聚果糖(FOS)和β-果糖呋喃糖苷酶(FFase)酶的温度,水分含量和接种量的条件。使用支持物(咖啡银皮)用240-g / l蔗糖溶液湿润至60%,70%或80%并接种日本曲霉的孢子悬浮液进行发酵测定,以获得2×10 5、2×10 6或2×10 7孢子/克干物质。发酵过程在20小时内保持在26、30或34°C的静态条件下。水分含量不影响FOS和FFase的产生;但是,温度在26到30°C之间,接种量约为2×10 7孢子/克干物质时,结果最大(FOS = 208.8 g / l,生产力为10.44 g / lh; FFase = 64.12单位U / ml,生产力4.0 U / ml h)。这些结果大大高于没有优化发酵条件下获得的结果,对于建立FOS和FFase生产的新工业过程具有重要意义。

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