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挪威的土壤和水域含有嗜温性、可降解塑料的细菌。

Norwegian Soils and Waters Contain Mesophilic, Plastic-Degrading Bacteria.

作者信息

Charnock Colin

机构信息

Department of Life Sciences and Health, Faculty of Health Sciences, Oslo Metropolitan University, Postbox 4, St. Olavs Plass, 0130 Oslo, Norway.

出版信息

Microorganisms. 2021 Jan 3;9(1):94. doi: 10.3390/microorganisms9010094.

Abstract

Plastic pollution has become one of the most critical environmental issues, as rapidly increasing production, compounded by persistence of plastic wastes in the environment, are outpacing efforts to keep ecosystems plastic-free. A switch to plastics more amenable to microbial attack is one of several possible responses. Against this background, the current study describes the isolation, enumeration and polyphasic characterization of plastic-degrading bacteria present in Norwegian terrestrial and aquatic habits. It shows that these bacteria are present in relatively high numbers, and that plastic-degrading capabilities are found in several taxa, most especially . Some isolates wereable to degrade several plastics. Notably, a sp. and a sp. degraded, respectively, four and six of the eight plastics investigated and a number of other polymers relevant for plastic blends. The paper also has a methodological aspect, presenting various approaches for assaying plastic-degrading properties and a PCR/sequencing-based approach for the identification of potential polyethylene terephthalate-degrading genes. A candidate gene was detected in several isolates. The study shows that Norwegian environments are a rich source of bacteria with the ability to degrade bioplastics possibly representing a natural remediation capacity, as well as a potential source of useful enzymes.

摘要

塑料污染已成为最关键的环境问题之一,因为塑料产量迅速增长,再加上塑料垃圾在环境中的持久性,使得保持生态系统无塑料的努力相形见绌。转向更易受微生物攻击的塑料是几种可能的应对措施之一。在此背景下,当前的研究描述了挪威陆地和水生栖息地中存在的塑料降解细菌的分离、计数和多相表征。研究表明,这些细菌数量相对较多,并且在几个分类群中发现了塑料降解能力,尤其是 。一些分离株能够降解几种塑料。值得注意的是,一株 菌和一株 菌分别降解了所研究的八种塑料中的四种和六种,以及一些与塑料共混物相关的其他聚合物。本文还具有方法学方面的内容,介绍了测定塑料降解特性的各种方法以及基于PCR/测序的潜在聚对苯二甲酸乙二酯降解基因的鉴定方法。在几个 分离株中检测到一个候选基因。该研究表明,挪威环境是具有降解生物塑料能力的细菌的丰富来源,这可能代表了一种自然修复能力,也是有用酶的潜在来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3081/7823905/989365709efd/microorganisms-09-00094-g001.jpg

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