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Biodegradation of Polyester Polyurethane by Endophytic Fungi

机译:内生真菌对聚酯聚氨酯的生物降解

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摘要

Bioremediation is an important approach to waste reduction that relies on biological processes to break down a variety of pollutants. This is made possible by the vast metabolic diversity of the microbial world. To explore this diversity for the breakdown of plastic, we screened several dozen endophytic fungi for their ability to degrade the synthetic polymer polyester polyurethane (PUR). Several organisms demonstrated the ability to efficiently degrade PUR in both solid and liquid suspensions. Particularly robust activity was observed among several isolates in the genus Pestalotiopsis, although it was not a universal feature of this genus. Two Pestalotiopsis microspora isolates were uniquely able to grow on PUR as the sole carbon source under both aerobic and anaerobic conditions. Molecular characterization of this activity suggests that a serine hydrolase is responsible for degradation of PUR. The broad distribution of activity observed and the unprecedented case of anaerobic growth using PUR as the sole carbon source suggest that endophytes are a promising source of biodiversity from which to screen for metabolic properties useful for bioremediation.
机译:生物修复是减少废物的重要方法,它依靠生物过程来分解各种污染物。微生物世界巨大的代谢多样性使之成为可能。为了探索这种塑料分解的多样性,我们筛选了数十种内生真菌,它们具有降解合成聚合物聚酯聚氨酯(PUR)的能力。几种生物体显示出能够有效降解固体和液体悬浮液中PUR的能力。尽管Pestalotiopsis属的几个分离株不是该属的普遍特征,但观察到的活性特别强。在有氧和无氧条件下,两种拟青霉微孢子菌菌株能够唯一地在PUR上生长,作为唯一的碳源。该活性的分子特征表明丝氨酸水解酶负责PUR的降解。使用PUR作为唯一碳源,观察到的活性分布广泛,并且出现了前所未有的厌氧生长情况,这表明内生菌是一种有前途的生物多样性来源,可以从中筛选出可用于生物修复的代谢特性。

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