MOE Laboratory of Biosystem Homeostasis and Protection, College of Life Sciences, Zhejiang University, Hangzhou, Zhejiang, 310058, China.
Hangzhou Environmental Monitoring Center Station, Hangzhou, China.
Biodegradation. 2019 Dec;30(5-6):467-479. doi: 10.1007/s10532-019-09888-5. Epub 2019 Aug 28.
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.
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。