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Microbial degradation of polyethylene terephthalate: a systematic review

微生物 聚对苯二甲酸乙二醇酯 生物降解 细菌 微生物降解 生物 有益生物体 塑料污染 微生物学 生物技术 污染 材料科学 生态学 遗传学 复合材料
作者
César Fernández,Michelly Paola Guzmán Castillo,Silvia Andrea Quijano Pérez,Lida Vivian Carvajal Rodríguez
出处
期刊:SN applied sciences [Springer Nature]
卷期号:4 (10) 被引量:27
标识
DOI:10.1007/s42452-022-05143-4
摘要

Abstract Plastic pollution levels have increased rapidly in recent years, due to the accumulation of plastic waste, including polyethylene terephthalate (PET). Both high production and the lack of efficient methods for disposal and recycling affect diverse aquatic and terrestrial ecosystems owing to the high accumulation rates of plastics. Traditional chemical and physical degradation techniques have caused adverse effects on the environment; hence, the use of microorganisms for plastic degradation has gained importance recently. This systematic review was conducted for evaluating the reported findings about PET degradation by wild and genetically modified microorganisms to make them available for future work and to contribute to the eventual implementation of an alternative, an effective, and environmentally friendly method for the management of plastic waste such as PET. Both wild and genetically modified microorganisms with the metabolic potential to degrade this polymer were identified, in addition to the enzymes and genes used for genetic modification. The most prevalent wild-type PET-degrading microorganisms were bacteria (56.3%, 36 genera), followed by fungi (32.4%, 30 genera), microalgae (1.4%; 1 genus, namely Spirulina sp.), and invertebrate associated microbiota (2.8%). Among fungi and bacteria, the most prevalent genera were Aspergillus sp. and Bacillus sp . , respectively. About genetically modified microorganisms, 50 strains of Escherichia coli , most of them expressing PETase enzyme, have been used. We emphasize the pressing need for implementing biological techniques for PET waste management on a commercial scale, using consortia of microorganisms. We present this work in five sections: an Introduction that highlights the importance of PET biodegradation as an effective and sustainable alternative, a section on Materials and methods that summarizes how the search for articles and manuscripts in different databases was done, and another Results section where we present the works found on the subject, a final part of Discussion and analysis of the literature found and finally we present a Conclusion and prospects.

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