Faculty of Life and Environmental Sciences, Microbiology Research Center for Sustainability, University of Tsukuba, Tsukuba, Ibaraki, Japan.
Biosci Biotechnol Biochem. 2024 Oct 22;88(11):1247-1253. doi: 10.1093/bbb/zbae111.
Microbial fermentation has provided fermented foods and important chemicals such as antibiotics, amino acids, and vitamins. Metabolic engineering of synthetic microbes has expanded the range of compounds produced by fermentation. Petroleum-derived aromatic compounds are widely used in industry as raw materials for pharmaceuticals, dyes, and polymers and are in great demand. This review highlights the current efforts in the microbial production of various aromatic chemicals such as aromatic amines, cinnamic acid derivatives, and flavoring aromatics, including their biosynthesis pathways. In addition, the unique biosynthetic mechanism of pyrazine, a heterocyclic compound, from amino acids is described to expand the use of biomass-derived aromatic compounds. I also discuss our efforts to develop high-performance bioplastics superior to petroleum plastics from the aromatic compounds produced by microbial fermentation.
微生物发酵为我们提供了发酵食品和重要的化学物质,如抗生素、氨基酸和维生素。合成微生物的代谢工程扩展了发酵产物的范围。石油衍生的芳香族化合物作为制药、染料和聚合物的原料在工业中得到广泛应用,需求量很大。本文重点介绍了微生物生产各种芳香族化学品的最新进展,如芳香族胺、肉桂酸衍生物和调味香料,包括它们的生物合成途径。此外,还描述了氨基酸合成杂环化合物吡嗪的独特生物合成机制,以扩大利用生物质衍生的芳香族化合物。我还讨论了我们如何努力从微生物发酵产生的芳香族化合物中开发出优于石油塑料的高性能生物塑料。