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[构建用于利用木糖合成增值化学品的微生物细胞工厂]

[Construction of microbial cell factories for synthesizing value-added chemicals with xylose].

作者信息

Wang Tong, Lu Liangyu, Shen Xiaolin, Sun Xinxiao, Wang Jia, Yuan Qipeng

机构信息

State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing 100029, China.

出版信息

Sheng Wu Gong Cheng Xue Bao. 2024 Aug 25;40(8):2695-2709. doi: 10.13345/j.cjb.240161.

Abstract

Lignocellulose is the most abundant renewable resource on earth. Constructing microbial cell factories for synthesizing value-added chemicals with lignocellulose is the key to realize green biomanufacturing. Xylose is the second most fermentable sugar in lignocellulose after glucose. Building microbial cell factories that can efficiently metabolize xylose is of great significance to achieve full utilization of lignocellulose. However, the lower metabolism efficiency of xylose than that of glucose in most microorganisms limits the application of xylose. In recent years, the deepening understanding of microbial metabolic mechanisms and the continuous advancement of synthetic biology have greatly improved the efficiency of microbial metabolism of xylose and expanded the spectrum of xylose-derived products. This article introduces several xylose metabolic pathways that exist in the nature and the derived products, summarizes the strategies for constructing recombinant strains that can co-utilize xylose and glucose, and reviews the research progress in the application of lignocellulose hydrolysates in the synthesis of target products. Finally, this article discusses the current technical bottlenecks and prospects the future development directions in this field.

摘要

木质纤维素是地球上最丰富的可再生资源。构建用于利用木质纤维素合成增值化学品的微生物细胞工厂是实现绿色生物制造的关键。木糖是木质纤维素中仅次于葡萄糖的第二大可发酵糖。构建能够高效代谢木糖的微生物细胞工厂对于实现木质纤维素的充分利用具有重要意义。然而,在大多数微生物中,木糖的代谢效率低于葡萄糖,这限制了木糖的应用。近年来,对微生物代谢机制的深入了解以及合成生物学的不断进步,极大地提高了微生物代谢木糖的效率,并拓宽了木糖衍生产品的范围。本文介绍了自然界中存在的几种木糖代谢途径及其衍生产品,总结了构建能够共同利用木糖和葡萄糖的重组菌株的策略,并综述了木质纤维素水解产物在目标产品合成中的应用研究进展。最后,本文讨论了当前的技术瓶颈,并展望了该领域未来的发展方向。

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