Fungal Enzymes Involved in Plastics Biodegradation

Author:

Temporiti Marta Elisabetta EleonoraORCID,Nicola Lidia,Nielsen Erik,Tosi SolveigORCID

Abstract

Plastic pollution is a growing environmental problem, in part due to the extremely stable and durable nature of this polymer. As recycling does not provide a complete solution, research has been focusing on alternative ways of degrading plastic. Fungi provide a wide array of enzymes specialized in the degradation of recalcitrant substances and are very promising candidates in the field of plastic degradation. This review examines the present literature for different fungal enzymes involved in plastic degradation, describing their characteristics, efficacy and biotechnological applications. Fungal laccases and peroxidases, generally used by fungi to degrade lignin, show good results in degrading polyethylene (PE) and polyvinyl chloride (PVC), while esterases such as cutinases and lipases were successfully used to degrade polyethylene terephthalate (PET) and polyurethane (PUR). Good results were also obtained on PUR by fungal proteases and ureases. All these enzymes were isolated from many different fungi, from both Basidiomycetes and Ascomycetes, and have shown remarkable efficiency in plastic biodegradation under laboratory conditions. Therefore, future research should focus on the interactions between the genes, proteins, metabolites and environmental conditions involved in the processes. Further steps such as the improvement in catalytic efficiency and genetic engineering could lead these enzymes to become biotechnological applications in the field of plastic degradation.

Publisher

MDPI AG

Subject

Virology,Microbiology (medical),Microbiology

Reference265 articles.

1. Polymer Science and Technology;Fried,1995

2. The nature of plastics and their societal usage;Millet,2018

3. Critical evaluation of biodegradation studies on synthetic plastics through a systematic literature review

4. Plastics–The Facts 2021: An Analysis of European Plastics Production, Demand and Waste Data https://plasticseurope.org/knowledge-hub/plastics-the-facts-2021/

5. Biodegradation of plastics: A state of the art review

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