Centre for Bioengineering & Biotechnology, State Key Laboratory of Heavy Oil Processing, China University of Petroleum, Qingdao 266580, China.
Biological Physics Laboratory, School of Physics and Astronomy, University of Manchester, Manchester M13 9PL, UK.
Biotechnol Adv. 2014 Mar-Apr;32(2):492-503. doi: 10.1016/j.biotechadv.2014.01.002. Epub 2014 Jan 9.
Acetoin is a volatile compound widely used in foods, cigarettes, cosmetics, detergents, chemical synthesis, plant growth promoters and biological pest controls. It works largely as flavour and fragrance. Since some bacteria were found to be capable of vigorous acetoin biosynthesis from versatile renewable biomass, acetoin, like its reduced form 2,3-butanediol, was also classified as a promising bio-based platform chemical. In spite of several reviews on the biological production of 2,3-butanediol, little has concentrated on acetoin. The two analogous compounds are present in the same acetoin (or 2,3-butanediol) pathway, but their production processes including optimal strains, substrates, derivatives, process controls and product recovery methods are quite different. In this review, the usages of acetoin are reviewed firstly to demonstrate its importance. The biosynthesis pathway and molecular regulation mechanisms are then outlined to depict the principal network of functioning in typical species. A phylogenetic tree is constructed and the relationship between taxonomy and acetoin producing ability is revealed for the first time, which will serve as a useful guide for the screening of competitive acetoin producers. Genetic engineering, medium optimization, and process control are effective strategies to improve productivity as well. Currently, downstream processing is one of the main barriers in efficient and economical industrial acetoin fermentation. The future prospects of microbial acetoin production are discussed in light of the current progress, challenges, and trends in this field.
乙酰丙酮是一种广泛应用于食品、香烟、化妆品、洗涤剂、化学合成、植物生长促进剂和生物防治的挥发性化合物。它主要作为香料和香精使用。由于一些细菌被发现能够从多种可再生生物质中强烈合成乙酰丙酮,因此乙酰丙酮与其还原形式 2,3-丁二醇一样,也被归类为有前途的生物基平台化学品。尽管有几篇关于 2,3-丁二醇生物生产的综述,但很少有文章集中讨论乙酰丙酮。这两种类似的化合物存在于相同的乙酰丙酮(或 2,3-丁二醇)途径中,但它们的生产过程包括最佳菌株、底物、衍生物、过程控制和产品回收方法都有很大的不同。在这篇综述中,首先回顾了乙酰丙酮的用途,以证明其重要性。然后概述了生物合成途径和分子调控机制,以描绘典型物种中主要的作用网络。构建了一个系统发育树,并首次揭示了分类学与乙酰丙酮生产能力之间的关系,这将为筛选有竞争力的乙酰丙酮生产者提供有用的指导。遗传工程、培养基优化和过程控制也是提高生产力的有效策略。目前,下游加工是高效经济的工业乙酰丙酮发酵的主要障碍之一。根据该领域的当前进展、挑战和趋势,讨论了微生物乙酰丙酮生产的未来前景。