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拓展糖醇产业:糖醇的微生物生产及相关的化学催化衍生物。

Expanding sugar alcohol industry: Microbial production of sugar alcohols and associated chemocatalytic derivatives.

机构信息

Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin 300308, China; National Center of Technology Innovation for Synthetic Biology, Tianjin 300308, China.

Department of Chemical and Biochemical Engineering, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen 361005, China.

出版信息

Biotechnol Adv. 2023 May-Jun;64:108105. doi: 10.1016/j.biotechadv.2023.108105. Epub 2023 Feb 1.

Abstract

Sugar alcohols are polyols that are widely employed in the production of chemicals, pharmaceuticals, and food products. Chemical synthesis of polyols, however, is complex and necessitates the use of hazardous compounds. Therefore, the use of microbes to produce polyols has been proposed as an alternative to traditional synthesis strategies. Many biotechnological approaches have been described to enhancing sugar alcohols production and microbe-mediated sugar alcohol production has the potential to benefit from the availability of inexpensive substrate inputs. Among of them, microbe-mediated erythritol production has been implemented in an industrial scale, but microbial growth and substrate conversion rates are often limited by harsh environmental conditions. In this review, we focused on xylitol, mannitol, sorbitol, and erythritol, the four representative sugar alcohols. The main metabolic engineering strategies, such as regulation of key genes and cofactor balancing, for improving the production of these sugar alcohols were reviewed. The feasible strategies to enhance the stress tolerance of chassis cells, especially thermotolerance, were also summarized. Different low-cost substrates like glycerol, molasses, cellulose hydrolysate, and CO employed for producing these sugar alcohols were presented. Given the value of polyols as precursor platform chemicals that can be leveraged to produce a diverse array of chemical products, we not only discuss the challenges encountered in the above parts, but also envisioned the development of their derivatives for broadening the application of sugar alcohols.

摘要

糖醇是一种多元醇,广泛应用于化学品、制药和食品产品的生产。然而,多元醇的化学合成过程复杂,需要使用危险化合物。因此,人们提出利用微生物生产多元醇来替代传统的合成策略。已经描述了许多生物技术方法来提高糖醇的产量,微生物介导的糖醇生产有可能受益于廉价底物投入的可用性。其中,微生物介导的赤藓糖醇生产已经在工业规模上实施,但微生物的生长和底物转化率通常受到恶劣环境条件的限制。在这篇综述中,我们重点介绍了四种代表性的糖醇,即木糖醇、甘露醇、山梨糖醇和赤藓糖醇。综述了改善这些糖醇生产的主要代谢工程策略,如关键基因的调控和辅因子平衡。还总结了增强底盘细胞(特别是耐热性)的应激耐受能力的可行策略。介绍了不同的低成本底物,如甘油、糖蜜、纤维素水解物和 CO,用于生产这些糖醇。鉴于多元醇作为前体平台化学品的价值,可用于生产各种化学产品,我们不仅讨论了上述部分遇到的挑战,还设想了它们的衍生物的发展,以拓宽糖醇的应用。

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