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吲哚的生物降解与生物转化:进展与展望

Biodegradation and Biotransformation of Indole: Advances and Perspectives.

作者信息

Ma Qiao, Zhang Xuwang, Qu Yuanyuan

机构信息

Institute of Environmental Systems Biology, College of Environmental Science and Engineering, Dalian Maritime University, Dalian, China.

Key Laboratory of Industrial Ecology and Environmental Engineering (Ministry of Education), School of Food and Environment, Dalian University of Technology, Panjin, China.

出版信息

Front Microbiol. 2018 Nov 1;9:2625. doi: 10.3389/fmicb.2018.02625. eCollection 2018.

Abstract

Indole is long regarded as a typical -heterocyclic aromatic pollutant in industrial and agricultural wastewater, and recently it has been identified as a versatile signaling molecule with wide environmental distributions. An exponentially growing number of researches have been reported on indole due to its significant roles in bacterial physiology, pathogenesis, animal behavior and human diseases. From the viewpoint of both environmental bioremediation and biological studies, the researches on metabolism and fates of indole are important to realize environmental treatment and illuminate its biological function. Indole can be produced from tryptophan by tryptophanase in many bacterial species. Meanwhile, various bacterial strains have obtained the ability to transform and degrade indole. The characteristics and pathways for indole degradation have been investigated for a century, and the functional genes for indole aerobic degradation have also been uncovered recently. Interestingly, many oxygenases have proven to be able to oxidize indole to indigo, and this historic and motivating case for biological applications has attracted intensive attention for decades. Herein, the bacteria, enzymes and pathways for indole production, biodegradation and biotransformation are systematically summarized, and the future researches on indole-microbe interactions are also prospected.

摘要

吲哚长期以来被视为工农业废水中典型的含氮杂环芳香污染物,最近它被确认为一种分布广泛的多功能信号分子。由于吲哚在细菌生理学、发病机制、动物行为和人类疾病中具有重要作用,关于吲哚的研究报告数量呈指数级增长。从环境生物修复和生物学研究的角度来看,对吲哚代谢和归宿的研究对于实现环境治理和阐明其生物学功能都很重要。在许多细菌物种中,吲哚可由色氨酸酶作用于色氨酸产生。同时,各种细菌菌株已具备转化和降解吲哚的能力。对吲哚降解的特性和途径已研究了一个世纪,吲哚好氧降解的功能基因也于近期被发现。有趣的是,许多加氧酶已被证明能够将吲哚氧化为靛蓝,这一具有历史意义且引人关注的生物应用案例数十年来一直备受关注。本文系统总结了吲哚产生、生物降解和生物转化过程中的细菌、酶及途径,并对吲哚与微生物相互作用的未来研究进行了展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e47/6221969/ea21cbb282c9/fmicb-09-02625-g0001.jpg

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