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Dynamic Co-Cultivation Process of Corynebacterium Glutamicum Strains for the Fermentative Production of Riboflavin

Fermentation(2021)

Norges Teknisk Naturvitenskapelige Univ NTNU | Bielefeld Univ

Cited 14|Views12
Abstract
Residual streams from lignocellulosic processes contain sugar mixtures of glucose, xylose, and mannose. Here, the industrial workhorse Corynebacterium glutamicum was explored as a research platform for the rational utilization of a multiple sugar substrate. The endogenous manA gene was overexpressed to enhance mannose utilization. The overexpression of the xylA gene from Xanthomonas campestris in combination with the endogenous xylB gene enabled xylose consumption by C. glutamicum. Furthermore, riboflavin production was triggered by overexpressing the sigH gene from C. glutamicum. The resulting strains were studied during batch fermentations in flasks and 2 L lab-scale bioreactors separately using glucose, mannose, xylose, and a mixture of these three sugars as a carbon source. The production of riboflavin and consumption of sugars were improved during fed-batch fermentation thanks to a dynamic inoculation strategy of manA overexpressing strain and xylAB overexpressing strain. The final riboflavin titer, yield, and volumetric productivity from the sugar mixture were 27 mg L−1, 0.52 mg g−1, and 0.25 mg L−1 h−1, respectively. It reached a 56% higher volumetric productivity with 45% less by-product formation compared with an equivalent process inoculated with a single strain overexpressing the genes xylAB and manA combined. The results indicate the advantages of dynamic multi strains processes for the conversion of sugar mixtures.
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Corynebacterium glutamcium,riboflavin,mannose,xylose,bioreactor,co-cultivation,sigma factor H (SigH)
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要点】:本研究通过动态共培养策略,利用 Corynebacterium glutamicum 菌株发酵生产核黄素,提高了糖混合物的利用效率和核黄素的产量及生产率。

方法】:通过过表达 C. glutamicum 的内源 manA 基因增强甘露糖利用,过表达来自 Xanthomonas campestris 的 xylA 基因和 C. glutamicum 的内源 xylB 基因实现木糖消耗,以及过表达 sigH 基因触发核黄素生产。

实验】:在批次发酵和 2 L 实验规模生物反应器中,使用葡萄糖、甘露糖、木糖及其混合物作为碳源,通过动态接种 manA 过表达菌株和 xylAB 过表达菌株的共培养策略,实现了核黄素产量和糖消耗的显著提升。最终,核黄素的浓度、产率和体积生产率分别达到 27 mg L−1、0.52 mg g−1 和 0.25 mg L−1 h−1,与单一菌株相比,体积生产率提高了 56%,副产品生成减少了 45%。