Departamento de Ingeniería Bioquímica-Ciencias de la Ingeniería, Instituto Tecnológico de Celaya, Av. Tecnológico s/n, CP 38010, Celaya Gto, México.
Departamento de Ingeniería Bioquímica-Ciencias de la Ingeniería, Instituto Tecnológico de Celaya, Av. Tecnológico s/n, CP 38010, Celaya Gto, México.
Carbohydr Polym. 2018 Oct 15;198:94-100. doi: 10.1016/j.carbpol.2018.06.075. Epub 2018 Jun 18.
Saccharomyces paradoxus, a native microorganism of the aguamiel, was used successfully for endoinulinase synthesis for agave fructooligasaccharide (FOS) production. We optimized the fermentation parameters to maximize the enzyme synthesis, and we performed enzyme kinetics studies to achieve agave fructans hydrolysis. The results showed that under constant operating conditions (pH 7.7, 40 °C, 175 rpm of agitation, and 0.005 VVM of aeration) results in the production of an enzymatic extract with 49.57 mg/L. This enzymatic extract, when mixed with an agave fructans solution containing 37.8 g/L, allowed us to obtain products with 18% more FOS content the original concentration. The mass spectrum plot shows that the hydrolyzed product contains FOS with a degree of polymerization from 5 to 9 hexose units. These results are promising because they show FOS production from agave and confirm that importance of using native strains in the design of directed fermentation processes.
龙舌兰蜜源微生物酵母异常汉逊氏酵母被成功用于内切菊粉酶的合成,以生产龙舌兰果低聚果糖(FOS)。我们优化了发酵参数以最大限度地提高酶的合成,并进行了酶动力学研究以实现龙舌兰果聚糖的水解。结果表明,在恒定操作条件(pH7.7、40°C、搅拌速度 175rpm 和通气量 0.005VVM)下,可得到酶提取物,其产量为 49.57mg/L。该酶提取物与含有 37.8g/L 的龙舌兰果聚糖溶液混合,使我们能够获得 FOS 含量比原始浓度增加 18%的产物。质谱图表明,水解产物含有聚合度为 5 到 9 个己糖单元的 FOS。这些结果很有前景,因为它们展示了龙舌兰 FOS 的生产,并证实了在定向发酵过程设计中使用本地菌株的重要性。