固态发酵系统的设计,用于聚合物液溶性细胞外酶由有线真菌生产
Cynthia Lizbeth López-García1, Adriana Jazmín Legorreta-Castañeda1, Raúl Sansón-Temich1
1Instituto Politécnico Nacional, Escuela Nacional de Ciencias Biológicas, Departamento de Microbiología, Laboratorio de Bioquímica y Biotecnología de Hongos, Carpio y plan de Ayala s/n, Col. Santo Tomás.
Journal of visualized experiments : JoVE
|June 23, 2025
概括
在旋转系统中使用小麦的固态发酵 (SSF) 显著增加了酶生产. 这种可适应的生物转化方法产生的酶活性是浸泡发酵 (SmF) 的4-6倍.
科学领域:
- 生物技术是生物技术.
- 生物工艺工程 生物工艺工程
- 工业微生物学 工业微生物学
背景情况:
- 固态发酵 (SSF) 是一种生物转化过程,使用固体基质和最小的自由水.
- 它涉及微生物在基质的固体基质上生长并透营养.
- SSF有三个相互连接的阶段:气态,液态和固态.
研究的目的:
- 用小麦作为旋转SSF系统中的基质来描述一种使用小麦生产酶的协议.
- 为了评估这种SSF方法的有效性,与浸泡发酵 (SmF) 相比.
- 要突出系统对各种生物技术应用的适应性.
主要方法:
- 用小麦作为基质,补充了诱导剂 (酸盐,酸盐,粉或纤维素) 以1:100的比例.
- 在用真菌形式接种之前,混合物被自化,消毒并调整到所需的水分含量.
- 在最佳条件下,发酵发生在每分钟10转的旋转系统中,持续6-8天,随后进行酶提取和澄清.
主要成果:
- 与浸泡发酵 (SmF) 相比,SSF系统显示酶活性增加了4-6倍.
- 该方法可以适应不同的真菌物种,基板和诱导剂.
- 从发酵基质中成功提取,澄清和缩了酶.
结论:
- 描述的旋转SSF系统对酶生产非常有效,与SmF相比,它具有显著的优势.
- 它的多功能性使其成为各种生物技术应用的宝贵工具.
- 小麦是通过SSF合成酶的有效农业工业副产品.
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