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希瓦氏菌MR-1对阳离子红X-GRL的厌氧脱色与解毒作用

Anaerobic decolorization and detoxification of cationic red X-GRL by Shewanella oneidensis MR-1.

作者信息

Li Qian, Feng Xiao-Li, Li Ting-Ting, Lu Xue-Rong, Liu Qiu-Yue, Han Xue, Feng Yu-Jie, Liu Zhao-Ying, Zhang Xi-Jia, Xiao Xiang

机构信息

a School of the Environment and Safety Engineering , Jiangsu University , Zhenjiang , People's Republic of China.

b State Key Laboratory of Urban Water Resource and Environment , Harbin Institute of Technology , Harbin , People's Republic of China.

出版信息

Environ Technol. 2018 Sep;39(18):2382-2389. doi: 10.1080/09593330.2017.1355933. Epub 2017 Jul 27.

Abstract

The ability of an electrochemically active bacterium, Shewanella oneidensis MR-1, to decolorize azo dye cationic red X-GRL (X-GRL) was investigated. S. oneidensis MR-1 showed a high decolorization capability for X-GRL under anaerobic conditions. The Mtr respiratory pathway was proved to be involved in the extracellular decolorization of X-GRL. The decolorization efficiency of S. oneidensis MR-1 was significantly inhibited when the initial X-GRL concentration was over 200 mg L. Increasing the inoculum volume of S. oneidensis MR-1 could obviously promote the X-GRL decolorization. The 100 mg L X-GRL and 6% (v/v) inoculum volume were chosen as the optimal parameter. Under such a condition, almost all of X-GRL (100 mg L) could be completely reduced after 12-h incubation at the pH range of 5.5-8.0 and temperature range of 30-40°C. Salinity in the medium also affected X-GRL decolorization. Lactate and citric acid were found to be the suitable electron donors for X-GRL decolorization. Although the genotoxicity increased slightly, the phytotoxicity of X-GRL in the decolorization process was significantly reduced by S. oneidensis MR-1.

摘要

研究了电化学活性细菌——希瓦氏菌属MR-1对偶氮染料阳离子红X-GRL(X-GRL)的脱色能力。希瓦氏菌属MR-1在厌氧条件下对X-GRL表现出较高的脱色能力。事实证明,Mtr呼吸途径参与了X-GRL的细胞外脱色过程。当初始X-GRL浓度超过200mg/L时,希瓦氏菌属MR-1的脱色效率受到显著抑制。增加希瓦氏菌属MR-1的接种量可明显促进X-GRL的脱色。选择100mg/L的X-GRL和6%(v/v)的接种量作为最佳参数。在此条件下,在pH值为5.5 - 8.0、温度为30 - 40°C的范围内培养12小时后,几乎所有的X-GRL(100mg/L)都能被完全还原。培养基中的盐度也会影响X-GRL的脱色。发现乳酸和柠檬酸是X-GRL脱色的合适电子供体。虽然遗传毒性略有增加,但希瓦氏菌属MR-1在脱色过程中显著降低了X-GRL的植物毒性。

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