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Overcome of Carbon Catabolite Repression of Bioinsecticides Production by Sporeless Bacillus thuringiensis through Adequate Fermentation Technology

机译:通过适当的发酵技术克服无芽孢苏云金芽孢杆菌碳分解代谢物对生物杀虫剂的抑制作用

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摘要

The overcoming of catabolite repression, in bioinsecticides production by sporeless Bacillus thuringiensis strain S22 was investigated into fully controlled 3 L fermenter, using glucose based medium. When applying adequate oxygen profile throughout the fermentation period (75% oxygen saturation), it was possible to partially overcome the catabolite repression, normally occurring at high initial glucose concentrations (30 and 40 g/L glucose). Moreover, toxin production yield by sporeless strain S22 was markedly improved by the adoption of the fed-batch intermittent cultures technology. With 22.5 g/L glucose used into culture medium, toxin production was improved by about 36% when applying fed-batch culture compared to one batch. Consequently, the proposed fed-batch strategy was efficient for the overcome of the carbon catabolite repression. So, it was possible to overproduce insecticidal crystal proteins into highly concentrated medium.
机译:使用葡萄糖基培养基,在完全控制的3uringL发酵罐中研究了无孢子苏云金芽孢杆菌菌株S22生产生物杀虫剂过程中分解代谢物抑制的克服。当在整个发酵过程中施加足够的氧气分布(75%的氧气饱和度)时,有可能部分克服分解代谢物的阻遏作用,通常在高初始葡萄糖浓度(30和40μg/ L葡萄糖)下发生。此外,通过采用分批补料分批培养技术,无孢子菌株S22的毒素产量得到了显着提高。培养基中使用22.5μg/ L葡萄糖,与一批相比,分批补料培养的毒素产量提高了约36%。因此,所提出的分批补料策略对于克服碳分解代谢物的抑制是有效的。因此,有可能将杀虫晶体蛋白过量生产到高度浓缩的培养基中。

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