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利用乙酸盐作为有前景的构建模块进行代谢工程以生产生物基化学品。

Metabolic engineering using acetate as a promising building block for the production of bio-based chemicals.

作者信息

Gong Guiping, Wu Bo, Liu Linpei, Li Jianting, Zhu Qili, He Mingxiong, Hu Guoquan

机构信息

Biomass Energy Technology Research Centre, Key Laboratory of Development and Application of Rural Renewable Energy (Ministry of Agriculture and Rural Affairs), Biogas Institute of Ministry of Agriculture and Rural Affairs, Chengdu 610041, China.

出版信息

Eng Microbiol. 2022 Jul 26;2(4):100036. doi: 10.1016/j.engmic.2022.100036. eCollection 2022 Dec.

Abstract

The production of biofuels and biochemicals derived from microbial fermentation has received a lot of attention and interest in light of concerns about the depletion of fossil fuel resources and climatic degeneration. However, the economic viability of feedstocks for biological conversion remains a barrier, urging researchers to develop renewable and sustainable low-cost carbon sources for future bioindustries. Owing to the numerous advantages, acetate has been regarded as a promising feedstock targeting the production of acetyl-CoA-derived chemicals. This review aims to highlight the potential of acetate as a building block in industrial biotechnology for the production of bio-based chemicals with metabolic engineering. Different alternative approaches and routes comprised of lignocellulosic biomass, waste streams, and C1 gas for acetate generation are briefly described and evaluated. Then, a thorough explanation of the metabolic pathway for biotechnological acetate conversion, cellular transport, and toxin tolerance is described. Particularly, current developments in metabolic engineering of the manufacture of biochemicals from acetate are summarized in detail, with various microbial cell factories and strategies proposed to improve acetate assimilation and enhance product formation. Challenges and future development for acetate generation and assimilation as well as chemicals production from acetate is eventually shown. This review provides an overview of the current status of acetate utilization and proves the great potential of acetate with metabolic engineering in industrial biotechnology.

摘要

鉴于对化石燃料资源枯竭和气候恶化的担忧,源自微生物发酵的生物燃料和生物化学品的生产受到了广泛关注。然而,用于生物转化的原料的经济可行性仍然是一个障碍,促使研究人员为未来的生物产业开发可再生且可持续的低成本碳源。由于具有众多优势,乙酸盐已被视为一种有前景的原料,用于生产源自乙酰辅酶A的化学品。本综述旨在突出乙酸盐作为工业生物技术中用于通过代谢工程生产生物基化学品的基石的潜力。简要描述并评估了由木质纤维素生物质、废物流和用于生成乙酸盐的C1气体组成的不同替代方法和途径。然后,对生物技术乙酸盐转化的代谢途径、细胞运输和毒素耐受性进行了全面解释。特别详细总结了从乙酸盐生产生物化学品的代谢工程的当前进展,并提出了各种微生物细胞工厂和策略以改善乙酸盐同化并增强产物形成。最终展示了乙酸盐生成和同化以及从乙酸盐生产化学品所面临的挑战和未来发展。本综述概述了乙酸盐利用的现状,并证明了代谢工程在工业生物技术中乙酸盐的巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4dda/11610983/606a1077950b/ga1.jpg

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