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Microbial Genes for a Circular and Sustainable Bio-PET Economy

机译:循环和可持续生物PET经济的微生物基因

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摘要

Plastics have become an important environmental concern due to their durability and resistance to degradation. Out of all plastic materials, polyesters such as polyethylene terephthalate (PET) are amenable to biological degradation due to the action of microbial polyester hydrolases. The hydrolysis products obtained from PET can thereby be used for the synthesis of novel PET as well as become a potential carbon source for microorganisms. In addition, microorganisms and biomass can be used for the synthesis of the constituent monomers of PET from renewable sources. The combination of both biodegradation and biosynthesis would enable a completely circular bio-PET economy beyond the conventional recycling processes. Circular strategies like this could contribute to significantly decreasing the environmental impact of our dependence on this polymer. Here we review the efforts made towards turning PET into a viable feedstock for microbial transformations. We highlight current bottlenecks in degradation of the polymer and metabolism of the monomers, and we showcase fully biological or semisynthetic processes leading to the synthesis of PET from sustainable substrates.
机译:由于塑料的耐用性和抗降解性,它已成为重要的环境问题。在所有塑料中,由于微生物聚酯水解酶的作用,聚酯(例如聚对苯二甲酸乙二醇酯(PET))易于生物降解。从PET获得的水解产物因此可以用于合成新型PET,并且可以成为微生物的潜在碳源。另外,微生物和生物质可用于由可再生来源合成PET的组成单体。生物降解和生物合成的结合将使生物PET经济完全超越常规回收工艺。这样的循环策略可能会大大减少我们对这种聚合物的依赖性对环境的影响。在这里,我们回顾了为将PET转变为微生物转化的可行原料所做的努力。我们重点介绍了聚合物降解和单体代谢方面的当前瓶颈,并展示了完全的生物或半合成过程,可从可持续的基质合成PET。

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