Institute of Bio- and Geosciences, IBG-1: Biotechnology, Forschungszentrum Jülich, GmbH, 52425, Jülich, Germany.
Biotechnol J. 2020 Nov;15(11):e1900569. doi: 10.1002/biot.201900569. Epub 2020 Oct 20.
Aromatics and their derivatives are valuable chemicals with a plethora of important applications and thus play an integral role in modern society. Their current production relies mostly on the exploitation of petroleum resources. Independency from dwindling fossil resources and rising environmental concerns are major driving forces for the transition towards the production of sustainable aromatics from renewable feedstocks or waste streams. Whole-cell biocatalysis is a promising strategy that allows the valorization of highly abundant, low-cost substrates. In the last decades, extensive efforts are undertaken to allow the production of a wide spectrum of different aromatics and derivatives using microbes as biocatalysts. Pseudomonads are intriguing hosts for biocatalysis, as they display unique characteristics beneficial for the production of aromatics, including a distinct tolerance and versatile metabolism. This review highlights biotechnological applications of Pseudomonas as host for the production of aromatics and derived compounds. This includes their de novo biosynthesis from renewable resources, biotransformations in single- and biphasic fermentation setups, metabolic funneling of lignin-derived aromatics, and the upcycling of aromatic monomers from plastic waste streams. Additionally, this review provides insights into unique features of Pseudomonads that make them exceptional hosts for aromatics biotechnology and discusses engineering strategies.
芳香族化合物及其衍生物是具有多种重要应用的有价值的化学品,因此在现代社会中发挥着不可或缺的作用。它们目前的生产主要依赖于石油资源的开发。摆脱日益减少的化石资源和日益增长的环境问题的独立性,是从可再生原料或废物流生产可持续芳香族化合物的主要驱动力。全细胞生物催化是一种很有前途的策略,它可以利用丰富、廉价的底物来提高其价值。在过去的几十年中,人们付出了巨大的努力,试图利用微生物作为生物催化剂来生产广泛的不同芳香族化合物和衍生物。假单胞菌是生物催化的有趣宿主,因为它们具有独特的特性,有利于芳香族化合物的生产,包括独特的耐受性和多功能代谢。这篇综述强调了假单胞菌作为芳香族化合物和衍生化合物生产宿主的生物技术应用。这包括从可再生资源从头生物合成、单相和双相发酵设置中的生物转化、木质素衍生芳香族化合物的代谢通道化以及从塑料废物流中回收芳香族单体。此外,本文还介绍了假单胞菌的独特特性,这些特性使它们成为芳香族化合物生物技术的优秀宿主,并讨论了工程策略。