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融合塑料、微生物和酶:国际研讨会亮点。

Merging Plastics, Microbes, and Enzymes: Highlights from an International Workshop.

机构信息

Microbiomes and Bioenergy Research Group, Department of Biological Sciences, Universidad de los Andes, Bogotá, Colombia.

Junior Research Group Microbial Biotechnology, Leibniz Institute DSMZ-German Collection of Microorganisms and Cell Cultures, Braunschweig, Germany.

出版信息

Appl Environ Microbiol. 2022 Jul 26;88(14):e0072122. doi: 10.1128/aem.00721-22. Epub 2022 Jun 28.

Abstract

In the Anthropocene, plastic pollution is a worldwide concern that must be tackled from different viewpoints, bringing together different areas of science. Microbial transformation of polymers is a broad-spectrum research topic that has become a keystone in the circular economy of fossil-based and biobased plastics. To have an open discussion about these themes, experts in the synthesis of polymers and biodegradation of lignocellulose and plastics convened within the framework of The Transnational Network for Research and Innovation in Microbial Biodiversity, Enzymes Technology and Polymer Science (MENZYPOL-NET), which was recently created by early-stage scientists from Colombia and Germany. In this context, the international workshop "Microbial Synthesis and Degradation of Polymers: Toward a Sustainable Bioeconomy" was held on 27 September 2021 via Zoom. The workshop was divided into two sections, and questions were raised for discussion with panelists and expert guests. Several key points and relevant perspectives were delivered, mainly related to (i) the microbial evolution driven by plastic pollution; (ii) the relevance of and interplay between polymer structure/composition, enzymatic mechanisms, and assessment methods in plastic biodegradation; (iii) the recycling and valorization of plastic waste; (iv) engineered plastic-degrading enzymes; (v) the impact of (micro)plastics on environmental microbiomes; (vi) the isolation of plastic-degrading (PD) microbes and design of PD microbial consortia; and (vii) the synthesis and applications of biobased plastics. Finally, research priorities from these key points were identified within the microbial, enzyme, and polymer sciences.

摘要

在人类世,塑料污染是一个全球性的问题,必须从不同的角度来解决,汇集不同的科学领域。聚合物的微生物转化是一个广泛的研究课题,已成为化石基和生物基塑料循环经济的基石。为了就这些主题进行公开讨论,来自聚合物合成、木质纤维素和塑料生物降解领域的专家在跨学科研究和创新网络(MENZYPOL-NET)的框架内聚集在一起,该网络最近由来自哥伦比亚和德国的早期科学家创建。在此背景下,国际研讨会“聚合物的微生物合成与降解:迈向可持续生物经济”于 2021 年 9 月 27 日通过 Zoom 举行。研讨会分为两个部分,并提出问题供与会者和专家来宾讨论。会上提出了几个关键点和相关观点,主要涉及(i)塑料污染驱动的微生物进化;(ii)聚合物结构/组成、酶机制和塑料生物降解评估方法的相关性和相互作用;(iii)塑料废物的回收和增值;(iv)工程塑料降解酶;(v)(微)塑料对环境微生物组的影响;(vi)塑料降解(PD)微生物的分离和 PD 微生物群落的设计;和(vii)生物基塑料的合成和应用。最后,从这些关键点确定了微生物、酶和聚合物科学领域的研究重点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6134/9317848/967c340c333a/aem.00721-22-f001.jpg

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