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新分离丝状真菌ZM01对四氢呋喃的生物降解作用

Biodegradation of Tetrahydrofuran by the Newly Isolated Filamentous Fungus ZM01.

作者信息

Ren Hao, Li Hanbo, Wang Haixia, Huang Hui, Lu Zhenmei

机构信息

MOE Laboratory of Biosystem Homeostasis and Protection, College of Life Sciences, Zhejiang University, Hangzhou 310058, China.

出版信息

Microorganisms. 2020 Aug 5;8(8):1190. doi: 10.3390/microorganisms8081190.

Abstract

Tetrahydrofuran (THF) is widely used as a precursor for polymer syntheses and a versatile solvent in industries. THF is an environmental hazard and carcinogenic to humans. In the present study, a new THF-degrading filamentous fungus, ZM01, was isolated and characterized. Strain ZM01 can tolerate a maximum THF concentration of 260 mM and can completely degrade 5 mM THF in 48 h, with a maximum THF degradation rate of 133.40 mg THF h g dry weight. Growth inhibition was not observed when the initial THF concentration was below 150 mM, and the maximum THF degradation rate was still maintained at 118.21 mg THF h g dry weight at 50 mM THF, indicating the great potential of this strain to degrade THF at high concentrations. The initial key metabolic intermediate 2-hydroxytetrahydrofuran was detected and identified by gas chromatography (GC) analyses for the first time during the THF degradation process. Analyses of the effects of initial pH, incubation temperature, and heavy metal ions on THF degradation revealed that strain ZM01 can degrade THF under a relatively wide range of conditions and has good degradation ability under low pH and Cu stress, suggesting its adaptability and applicability for industrial wastewater treatment.

摘要

四氢呋喃(THF)在工业中广泛用作聚合物合成的前体和通用溶剂。THF对环境有害且对人类具有致癌性。在本研究中,分离并鉴定了一种新的降解THF的丝状真菌ZM01。ZM01菌株能够耐受的最大THF浓度为260 mM,并且能够在48小时内完全降解5 mM的THF,最大THF降解速率为133.40 mg THF h g干重。当初始THF浓度低于150 mM时未观察到生长抑制,并且在50 mM THF时最大THF降解速率仍保持在118.21 mg THF h g干重,表明该菌株在高浓度下具有降解THF的巨大潜力。在THF降解过程中首次通过气相色谱(GC)分析检测并鉴定了初始关键代谢中间体2-羟基四氢呋喃。对初始pH、培养温度和重金属离子对THF降解影响的分析表明,ZM01菌株能够在相对广泛的条件下降解THF,并且在低pH和铜胁迫下具有良好的降解能力,表明其对工业废水处理的适应性和适用性。

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