Filamentous fungi as emerging cell factories for the production of aromatic compounds
Review article, 2024

Microbial production of aromatic compounds from renewable feedstocks has gained increasing interest as a means towards sustainable production of chemicals. The potential of filamentous fungi for production of aromatic compounds has nonetheless not yet been widely exploited. Notably, many filamentous fungi can naturally break down lignin and metabolize lignin-derived aromatic compounds. A few examples where a fungal cell factory, often of Aspergillus spp., is used to produce an aromatic compound, typically through the conversion of one compound to another, have already been reported. In this review, we summarize fungal biosynthesis of biotechnologically interesting aromatic compounds. The focus is on compounds produced from the shikimate pathway. Biorefinery-relevant efforts for valorizing residual biomass or lignin derived compounds are also discussed. The advancement in engineering tools combined with the increasing amounts of data supporting the discovery of new enzymes and development of new bioprocesses has led to an increased range of potential production hosts and products. This is expected to translate into a wider utilization of fungal cell factories for production of aromatic compounds.

Lignin conversion

Filamentous fungi

Shikimate pathway

AROM

Aromatic compounds

Bioconversion

Aspergillus

Cell factory

Author

Pavithra Umashankar

Chalmers, Life Sciences, Industrial Biotechnology

Yvonne Nygård

Technical Research Centre of Finland (VTT)

Chalmers, Life Sciences, Industrial Biotechnology

Fungal Biology and Biotechnology

20543085 (eISSN)

Vol. 11 1 19

FunAromatics - High throughput technologies för production of aromatic biochemicals with fungi

Novo Nordisk Foundation (NNF22OC0074648), 2022-10-01 -- 2027-09-30.

Driving Forces

Sustainable development

Subject Categories

Biochemistry and Molecular Biology

Organic Chemistry

DOI

10.1186/s40694-024-00188-z

More information

Latest update

11/25/2024