Faculty of Biology and Environment, Ho Chi Minh City University of Food Industry, 140 Le Trong Tan Street, Tay Thanh Ward, Tan Phu District, Ho Chi Minh City, Viet Nam.
Department of Renewable Energy, HCMC University of Technology and Education, Ho Chi Minh City, 700000, Viet Nam.
Environ Res. 2023 Jan 1;216(Pt 1):114342. doi: 10.1016/j.envres.2022.114342. Epub 2022 Sep 28.
Plastics, micro- and nano-plastics pollution are undoubtedly a severe and crucial ecological threat due to the durability of plastics and their destructive impacts on humans and wildlife. Most scientific investigations have addressed the classification, types, distribution, ingestion, fate, impacts, degradation, and various adverse effect of plastics. Heretofore, scanty reports have addressed implementing strategies for the remediation and mitigation of plastics. Therefore, in this paper, we review the current studies on the degradation of plastics, micro- and nano-plastics aided by microorganisms, and explore the relevant degradation properties and mechanisms. Diverse microorganisms are classified, such as bacteria, fungi, algae, cyanobacteria, wax worms, and enzymes that can decompose various plastics. Furthermore, bio-degradation is influenced by microbial features and environmental parameters; therefore, the ecological factors affecting plastic degradation and the resulting degradation consequences are discussed. In addition, the mechanisms underlying microbial-mediated plastic degradation are carefully studied. Finally, upcoming research directions and prospects for plastics degradation employing microorganisms are addressed. This review covers a comprehensive overview of the microorganism-assisted degradation of plastics, micro- and nano-plastics, and serves as a resource for future research into sustainable plastics pollution management methods.
塑料、微塑料和纳米塑料污染无疑是一个严重而关键的生态威胁,这是由于塑料的耐久性及其对人类和野生动物的破坏性影响。大多数科学研究都涉及塑料的分类、类型、分布、摄入、命运、影响、降解以及各种不良影响。迄今为止,关于实施塑料修复和缓解策略的报道很少。因此,在本文中,我们综述了目前利用微生物降解塑料、微塑料和纳米塑料的研究,并探讨了相关的降解特性和机制。不同的微生物被分类,如细菌、真菌、藻类、蓝细菌、黄粉虫和能够分解各种塑料的酶。此外,生物降解受微生物特征和环境参数的影响;因此,讨论了影响塑料降解的生态因素以及由此产生的降解后果。此外,还仔细研究了微生物介导的塑料降解的机制。最后,提出了利用微生物进行塑料降解的未来研究方向和前景。本综述涵盖了微生物辅助降解塑料、微塑料和纳米塑料的全面概述,为未来研究可持续的塑料污染管理方法提供了资源。