School of Environmental Science and Engineering, Sun Yat-Sen University, Guangzhou 510275, China; Environmental Microbiome Research Center, Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai), Sun Yat-Sen University, Guangzhou 510275, China.
School of Environmental Science and Engineering, Sun Yat-Sen University, Guangzhou 510275, China.
Environ Int. 2020 Feb;135:105373. doi: 10.1016/j.envint.2019.105373. Epub 2019 Dec 13.
Bioremediation of sites co-contaminated with organohalides and metal pollutants may have unsatisfactory performance, since metal ions can potentially inhibit organohalide respiration. To understand the detailed impact of metals on organohalide respiration, we tested the effects of four metal ions (i.e., Cu, Cd, Cr and Pb), as well as their mixtures, on reductive dechlorination of perchloroethene (PCE) and polychlorinated biphenyls (PCBs) in three different cultures, including a pure culture of Dehalococcoides mccartyi CG1, a Dehalococcoides-containing microcosm and a Dehalococcoides-Geobacter coculture. Results showed that the inhibitive impact on organohalide respiration depended on both the type and concentration of metal ions. Interestingly, the metal ions might indirectly inhibit organohalide respiration through affecting non-dechlorinating populations in the Dehalococcoides-containing microcosm. Nonetheless, compared to the CG1 pure culture, the Dehalococcoides-containing microcosm had higher tolerance to the individual metal ions. In addition, no synergistic inhibition was observed for reductive dechlorination of PCE and PCBs in cultures amended with metal ion mixtures. These results provide insights into the impact of metal ions on organohalide respiration, which may be helpful for future in situ bioremediation of organohalide-metal co-contaminated sites.
共污染有机卤化物和金属污染物的场地的生物修复可能效果不佳,因为金属离子可能会抑制有机卤化物呼吸。为了了解金属对有机卤化物呼吸的详细影响,我们测试了四种金属离子(即 Cu、Cd、Cr 和 Pb)及其混合物对三种不同培养物中(包括纯脱卤球菌(Dehalococcoides mccartyi CG1)培养物、含有脱卤球菌的微宇宙和脱卤球菌-地杆菌共培养物)的 PCE 和多氯联苯(PCBs)还原脱氯的影响。结果表明,对有机卤化物呼吸的抑制作用取决于金属离子的类型和浓度。有趣的是,金属离子可能通过影响含有脱卤球菌的微宇宙中的非脱氯种群间接抑制有机卤化物呼吸。尽管如此,与 CG1 纯培养物相比,含有脱卤球菌的微宇宙对单个金属离子具有更高的耐受性。此外,在添加金属离子混合物的培养物中,PCE 和 PCB 的还原脱氯未观察到协同抑制作用。这些结果深入了解了金属离子对有机卤化物呼吸的影响,这可能有助于未来对有机卤化物-金属共污染场地的原位生物修复。