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利用昆虫幼虫及其微生物群进行塑料降解。

Using Insect Larvae and Their Microbiota for Plastic Degradation.

作者信息

Vital-Vilchis Isabel, Karunakaran Esther

机构信息

School of Chemical, Materials and Biological Engineering, The University of Sheffield, Sheffield S1 3JD, UK.

出版信息

Insects. 2025 Feb 5;16(2):165. doi: 10.3390/insects16020165.

Abstract

Plastic pollution is one of the biggest current global threats to the environment given that petroleum-based plastic is recalcitrant and can stay in the environment for decades, even centuries, depending on the specific plastic type. Since less than 10% of all plastic made is recycled, and the other solutions (such as incineration or landfill storage) are pollutant methods, new, environmentally friendly solutions are needed. In this regard, the latest biotechnological discovery on this topic is the capability of insect larvae to use plastic polymers as carbon feedstock. This present review describes the most relevant information on the insect larvae capable of degrading plastic, mainly (Fabricius, 1798), (Linnaeus, 1758), and (Fabricius, 1776), and also adds new information about other less commonly studied "plastivore" insects such as termites. This review covers the literature from the very first work describing plastic degradation by larvae published in 2014 all the way to the very latest research available (till June 2024), focusing on the identification of a wide variety of plastic-degrading microorganisms isolated from larvae guts and on the understanding of the potential molecular mechanisms present for degradation to take place. It also describes the latest discoveries, which include the identification of novel enzymes from waxworm saliva.

摘要

鉴于石油基塑料具有顽固性,并且根据具体塑料类型的不同,可在环境中留存数十年甚至数百年,塑料污染是当前全球对环境的最大威胁之一。由于所有制造的塑料中只有不到10%被回收利用,而其他解决方法(如焚烧或填埋)都具有污染性,因此需要新的环保解决方案。在这方面,关于该主题的最新生物技术发现是昆虫幼虫能够将塑料聚合物用作碳源。本综述描述了有关能够降解塑料的昆虫幼虫的最相关信息,主要是黄粉虫(1798年,法布尔)、家蚕(1758年,林奈)和黑水虻(1776年,法布尔),并且还补充了有关其他较少研究的“食塑”昆虫(如白蚁)的新信息。本综述涵盖了从2014年发表的第一篇描述幼虫降解塑料的研究到最新研究(截至2024年6月)的文献,重点是从幼虫肠道中分离出的各种降解塑料的微生物的鉴定,以及对降解发生的潜在分子机制的理解。它还描述了最新发现,包括从蜡虫唾液中鉴定出新的酶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0532/11856541/df35197efc16/insects-16-00165-g007.jpg

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