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通过培养设计和代谢工程提高蓝藻和微藻中多聚葡聚糖的产量。

Improving polyglucan production in cyanobacteria and microalgae via cultivation design and metabolic engineering.

作者信息

Aikawa Shimpei, Ho Shih-Hsin, Nakanishi Akihito, Chang Jo-Shu, Hasunuma Tomohisa, Kondo Akihiko

机构信息

Department of Chemical Science and Engineering, Kobe University, Japan.

Core Research for Evolutional Science and Technology, Japan Science and Technology Agency, Japan.

出版信息

Biotechnol J. 2015 Jun;10(6):886-98. doi: 10.1002/biot.201400344. Epub 2015 Apr 13.

Abstract

Photosynthetic microorganisms, such as cyanobacteria and microalgae, are currently being investigated as alternative biomass resources for bioethanol production, owing to their benefits, including high-photosynthetic activity and whole-year cultivation without utilization of arable land. Polyglucans comprise the major carbohydrate content of these organisms. Polyglucans can be utilized as a carbon source for microbial fermentation. Although polyglucan production has so far been promoted by nutrient limitation, it must be further enhanced to accommodate market demand. This review focuses on the recent progress in the production of α-polyglucans such asglycogen and starch in cyanobacteria and green microalgae via cultivation design, including modifying the nutrient supply and replacing the growth medium. The control and manipulation of polyglucan metabolism necessitates the elucidation of the polyglucan production mechanism. We reviewed gene expression and metabolite accumulation profiles of cyanobacteria and green microalgae during nutrient limitation-stimulated α-polyglucan accumulation. We also focus on the enhancement in cyanobacterial glycogen production via the genetic engineering of glycolysis, CO2 concentration mechanism, and photosynthetic light-harvesting protein based on the polyglucan accumulation mechanism. The combined strategies of cultivation design and genetic engineering should be considered for further enhancement of polyglucan productivity for bioethanol production.

摘要

光合微生物,如蓝细菌和微藻,由于其具有光合活性高、全年无需占用耕地即可培养等优点,目前正作为生物乙醇生产的替代生物质资源进行研究。聚葡糖是这些生物中主要的碳水化合物成分。聚葡糖可作为微生物发酵的碳源。尽管到目前为止,聚葡糖的生产是通过营养限制来促进的,但为了满足市场需求,仍需进一步提高产量。本综述重点关注通过培养设计,包括改变营养供应和更换生长培养基,在蓝细菌和绿色微藻中生产糖原和淀粉等α-聚葡糖的最新进展。聚葡糖代谢的控制和调控需要阐明聚葡糖的生产机制。我们综述了营养限制刺激α-聚葡糖积累过程中蓝细菌和绿色微藻的基因表达和代谢物积累情况。我们还基于聚葡糖积累机制,重点探讨了通过糖酵解、二氧化碳浓缩机制和光合捕光蛋白的基因工程提高蓝细菌糖原产量的方法。为进一步提高用于生物乙醇生产的聚葡糖生产力,应考虑培养设计和基因工程相结合的策略。

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