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Fungal potential for the degradation of petroleum-based polymers: An overview of macro- and microplastics biodegradation

机译:石油基聚合物降解的真菌潜力:宏观和微塑料生物降解的概述

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摘要

Petroleum-based plastic materials as pollutants raise concerns because of their impact on the global ecosystem and on animal and human health. There is an urgent need to remove plastic waste from the environment to overcome the environmental crisis of plastic pollution. This review describes the natural and unique ability of fungi to invade substrates by using enzymes that have the capacity to detoxify pollutants and are able to act on nonspecific substrates, the fungal ability to produce hydrophobins for surface coating to attach hyphae to hydrophobic substrates, and hyphal ability to penetrate three dimensional substrates. Fungal studies on macro- and microplastics biodegradation have shown that fungi are able to use these materials as the sole carbon and energy source. Further research is required on novel isolates from plastisphere ecosystems, on the use of molecular techniques to characterize plastic-degrading fungi and enhance enzymatic activity levels, and on the use of omics-based technologies to accelerate plastic waste biodegradation processes. The addition of pro-oxidants species (photosensitizers) and the reduction of biocides and antioxidant stabilizers used in the plastic manufacturing process should also be considered to promote biodegradation. Interdisciplinary research and innovative fungal strategies for plastic waste biodegradation, as well as ecofriendly manufacturing of petroleumbased plastics, may help to reduce the negative impacts of plastic waste pollution in the biosphere.
机译:由于其对全球生态系统和动物和人类健康的影响,石油基塑料材料引起了担忧。迫切需要从环境中取出塑料废物,以克服塑料污染的环境危机。本综述描述了通过使用具有解毒污染物能力的酶并能够对非特异性底物作用的酶来引入底物的自然和独特能力,并能够对表面涂层产生疏水蛋白的真菌能力,以将苯染成疏水基质,以及悬垂能够穿透三维基板。对宏观和微塑料生物降解的真菌研究表明,真菌能够将这些材料用作唯一的碳和能源。从塑料肌肉生态系统的新型分离物中需要进一步研究,用于使用分子技术来表征塑性降解真菌并增强酶活性水平,以及使用常规的技术来加速塑料废物生物降解过程。还应考虑添加促氧化剂物种(光敏剂)和塑料制造过程中使用的杀菌剂和抗氧化剂稳定剂的减少,以促进生物降解。跨学科研究和创新的塑料废物生物降解策略,以及Ecofriendly生产石油塑料制造,可能有助于降低塑料废物污染在生物圈中的负面影响。

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