4.8 Article

Engineering interventions in industrial filamentous fungal cell factories for biomass valorization

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BIORESOURCE TECHNOLOGY
卷 344, 期 -, 页码 -

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ELSEVIER SCI LTD
DOI: 10.1016/j.biortech.2021.126209

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Filamentous fungi; Genetic engineering; Recombinant proteins; Expression host; Cell factory; Bulk chemicals

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Filamentous fungi have versatile capabilities for synthesizing valuable bio compounds such as enzymes, organic acids, and small molecule secondary metabolites. Using basic biochemical methods, filamentous fungi can convert lignocellulose into fermentable sugars and other biochemical products.
Filamentous fungi possess versatile capabilities for synthesizing a variety of valuable bio compounds, including enzymes, organic acids and small molecule secondary metabolites. The advancements of genetic and metabolic engineering techniques and the availability of sequenced genomes discovered their potential as expression hosts for recombinant protein production. Remarkably, plant-biomass degrading filamentous fungi show the unique capability to decompose lignocellulose, an extremely recalcitrant biopolymer. The basic biochemical approaches have motivated several industrial processes for lignocellulose biomass valorisation into fermentable sugars and other biochemical for biofuels, biomolecules, and biomaterials. The review gives insight into current trends in engineering filamentous fungi for enzymes, fuels, and chemicals from lignocellulose biomass. This review describes the variety of enzymes and compounds that filamentous fungi produce, engineering of filamentous fungi for biomass valorisation with a special focus on lignocellulolytic enzymes and other bulk chemicals.

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