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高效四氢呋喃降解菌的富集和特性研究。

Enrichment and characterization of a highly efficient tetrahydrofuran-degrading bacterial culture.

机构信息

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

Hangzhou Environmental Monitoring Center Station, Hangzhou, China.

出版信息

Biodegradation. 2019 Dec;30(5-6):467-479. doi: 10.1007/s10532-019-09888-5. Epub 2019 Aug 28.

Abstract

Tetrahydrofuran (THF) is a ubiquitous toxic and carcinogenic pollutant. Screening for pure or mixed-culture microorganisms that can efficiently degrade THF is difficult due to its chemical stability. In this study, an enrichment culture, H-1, with a stable THF-degrading ability and microbial community structure was enriched from activated sludge and could efficiently degrade 95% of 40 mM THF within 6 days. The optimal THF degradation conditions for H-1 were an initial pH of 7.0-8.0 and a temperature of 30 °C. The substrate tolerance concentration of H-1 reached 200 mM. Heavy metals tolerance concentrations of Cu, Cd and Pb of H-1 was 0.5 mM, 0.4 mM and 0.03 mM, and 4 mM Mn did not significantly influence the THF degradation ratio or biomass of H-1. H-1 might be a good material for actual wastewater treatment because of its efficient THF degradation performance and ability to resist various stressful conditions. In addition, the THF-degrading efficiency of H-1 was enhanced by the addition of moderate carbon sources. High-throughput sequencing of the 16S rRNA gene showed that Rhodococcus sp. (a potential THF-degrading strain) and Hydrogenophaga sp. (a potential non-THF-degrading strain) were the dominant microorganisms in the H-1 culture. These results indicate the potential coexistence of cooperation and competition between THF-degrading bacteria and nondegrading bacteria in this enrichment culture.

摘要

四氢呋喃(THF)是一种普遍存在的有毒和致癌污染物。由于其化学稳定性,筛选能够高效降解 THF 的纯培养或混合培养微生物较为困难。在这项研究中,从活性污泥中富集到了一株具有稳定 THF 降解能力和微生物群落结构的富集培养物 H-1,该培养物能够在 6 天内高效降解 40 mM 的 THF,降解率达到 95%。H-1 降解 THF 的最佳条件为初始 pH 值为 7.0-8.0,温度为 30°C。H-1 的底物耐受浓度达到 200 mM。H-1 对 Cu、Cd 和 Pb 的耐受浓度分别为 0.5 mM、0.4 mM 和 0.03 mM,而 4 mM 的 Mn 对 H-1 的 THF 降解率和生物量没有显著影响。由于 H-1 具有高效的 THF 降解性能和抵抗各种胁迫条件的能力,因此可能是实际废水处理的一种良好材料。此外,添加适量的碳源可以提高 H-1 的 THF 降解效率。16S rRNA 基因高通量测序结果表明,红球菌属(一种潜在的 THF 降解菌)和噬氢菌属(一种潜在的非 THF 降解菌)是 H-1 培养物中的优势微生物。这些结果表明,在该富集培养物中,THF 降解菌和非降解菌之间可能存在合作和竞争的共存关系。

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