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Biotechnological lycopene production by mated fermentation of Blakeslea trispora

机译:Blakeslea trispora交配发酵生产生物技术番茄红素

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摘要

A semi-industrial process (800-l fermentor) for lycopene production by mated fermentation of Blakeslea trispora plus (+) and minus (-) strains has been developed. The culture medium was designed at the flask scale, using a program based on a genetic algorithm; and a fermentation process by means of this medium was developed. Fermentation involves separate vegetative phases for (+) and (-) strains and inoculation of the production medium with a mix of both together. Feeding with imidazole or pyridine, molecules known to inhibit lycopene cyclase enzymatic activity, enhanced lycopene accumulation. Different raw materials and physical parameters, including dissolved oxygen, stirring speed, air flow rate, temperature, and pH, were checked in the fermentor to get maximum lycopene production. Typical data for the fermentation process are presented and discussed. This technology can be easily scaled-up to an industrial application for the production of this carotenoid nowadays widely in demand.
机译:已经开发了一种半工业过程(800-1发酵罐),该过程通过Blakeslea trispora plus(+)和minus(-)菌株的配对发酵生产番茄红素。使用基于遗传算法的程序以烧瓶规模设计培养基。并且开发了利用该培养基的发酵方法。发酵涉及(+)和(-)菌株的不同营养期,以及将两者混合使用的生产培养基的接种。以咪唑或吡啶为食,已知抑制番茄红素环化酶酶活性的分子增强了番茄红素的积累。在发酵罐中检查了不同的原料和物理参数,包括溶解氧,搅拌速度,空气流速,温度和pH值,以最大程度地生产番茄红素。介绍并讨论了发酵过程的典型数据。如今,这种技术可以轻松扩展到工业应用,以生产这种类胡萝卜素,如今需求量很大。

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