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从醋酸盐到生物基产品:工业生物技术尚未充分开发的潜力

From Acetate to Bio-Based Products: Underexploited Potential for Industrial Biotechnology.

作者信息

Kiefer Dirk, Merkel Manuel, Lilge Lars, Henkel Marius, Hausmann Rudolf

机构信息

University of Hohenheim, Institute of Food Science and Biotechnology, Department of Bioprocess Engineering, Fruwirthstrasse 12, 70599 Stuttgart, Germany.

University of Hohenheim, Institute of Food Science and Biotechnology, Department of Bioprocess Engineering, Fruwirthstrasse 12, 70599 Stuttgart, Germany.

出版信息

Trends Biotechnol. 2021 Apr;39(4):397-411. doi: 10.1016/j.tibtech.2020.09.004. Epub 2020 Oct 6.

Abstract

Currently, most biotechnological products are based on microbial conversion of carbohydrate substrates that are predominantly generated from sugar- or starch-containing plants. However, direct competitive uses of these feedstocks in the food and feed industry represent a dilemma, so using alternative carbon sources has become increasingly important in industrial biotechnology. A promising alternative carbon source that may be generated in substantial amounts from lignocellulosic biomass and C1 gases is acetate. This review discusses the underexploited potential of acetate to become a next-generation platform substrate in future industrial biotechnology and summarizes alternative sources and routes for acetate production. Furthermore, biotechnological aspects of microbial acetate utilization and the state of the art of biotechnological acetate conversion into value-added bioproducts are highlighted.

摘要

目前,大多数生物技术产品基于碳水化合物底物的微生物转化,这些底物主要来自含糖或淀粉的植物。然而,这些原料在食品和饲料行业的直接竞争性用途带来了两难困境,因此在工业生物技术中使用替代碳源变得越来越重要。一种有前景的替代碳源是乙酸盐,它可以大量从木质纤维素生物质和C1气体中产生。本文综述了乙酸盐在未来工业生物技术中成为下一代平台底物的未被充分利用的潜力,并总结了乙酸盐生产的替代来源和途径。此外,还强调了微生物利用乙酸盐的生物技术方面以及将生物技术乙酸盐转化为增值生物产品的技术现状。

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