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从铬垃圾填埋场分离并鉴定一株具有Cr(VI)还原能力的苍白杆菌属菌株CSCr-3。

Isolation and characterization of a Cr(VI)-reduction Ochrobactrum sp. strain CSCr-3 from chromium landfill.

作者信息

He Zhiguo, Gao Fengling, Sha Tao, Hu Yuehua, He Chao

机构信息

School of Minerals Processing and Bioengineering, Central South University, Changsha, 410083, PR China.

出版信息

J Hazard Mater. 2009 Apr 30;163(2-3):869-73. doi: 10.1016/j.jhazmat.2008.07.041. Epub 2008 Jul 16.

Abstract

A strain CSCr-3 with high Cr(VI)-reducing ability under alkaline conditions was isolated from a chromium landfill and identified as Ochrobactrum sp. on the basis of 16S rRNA gene sequence analysis. The cells were rod shaped, Gram-negative and motile. The physiological characteristics and Cr(VI)-reduction of the strain were also studied. The results showed that the Ochrobactrum sp. strain CSCr-3 was tolerant to very high concentration of Cr(VI) (800 mg/L) and capable of reducing different forms of Cr(VI) (chromate and dichromate), under a wide range of temperatures (25-40 degrees C) and pH (7-11) with optimum at 35 degrees C and initial pH 10. Higher rates of Cr(VI)-reduction were observed with higher initial cell and Cr(VI) concentrations. Strain CSCr-3 could reduce Cr(VI) very efficiently over a wide range of Cr(VI) concentrations (100-800 mg/L). The addition of glucose caused a dramatic increase in Cr(VI)-reduction by Ochrobactrum sp. CSCr-3, while the presence of sulfate or nitrate had no influence. The presence of other metals, such as Cu, Co, Mn, etc., significantly stimulated Cr(VI)-reduction ability by the strain CSCr-3. The results obtained in this study have significance for the bioremediation of chromate pollution.

摘要

从一个铬垃圾填埋场分离出了在碱性条件下具有高六价铬还原能力的CSCr - 3菌株,并基于16S rRNA基因序列分析将其鉴定为苍白杆菌属。该菌株细胞呈杆状,革兰氏阴性,具运动性。还对该菌株的生理特性和六价铬还原能力进行了研究。结果表明,苍白杆菌属CSCr - 3菌株能够耐受非常高浓度的六价铬(800 mg/L),并能在较宽的温度范围(25 - 40℃)和pH范围(7 - 11)内还原不同形式的六价铬(铬酸盐和重铬酸盐),最适温度为35℃,初始pH为10。初始细胞浓度和六价铬浓度越高,六价铬还原速率越高。CSCr - 3菌株在较宽的六价铬浓度范围(100 - 800 mg/L)内都能非常有效地还原六价铬。添加葡萄糖会使苍白杆菌属CSCr - 3菌株的六价铬还原能力显著增强,而硫酸盐或硝酸盐的存在则没有影响。其他金属如铜、钴、锰等的存在显著刺激了CSCr - 3菌株的六价铬还原能力。本研究所得结果对于铬酸盐污染的生物修复具有重要意义。

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