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不动杆菌生物报告器评估重金属毒性。

Acinetobacter bioreporter assessing heavy metals toxicity.

作者信息

Abd-El-Haleem Desouky, Zaki Sahar, Abulhamd Ashraf, Elbery Hassan, Abu-Elreesh Gadallah

机构信息

Environmental Biotechnology Department, Genetic Engineering and Biotechnology Research Institute, Mubarak City for Scientific Research and Technology Applications, Post code 21934, New Burg-Elarab, Alexandria, Egypt.

出版信息

J Basic Microbiol. 2006;46(5):339-47. doi: 10.1002/jobm.200510122.

Abstract

This work was conducted to employ a whole cell-based biosensor to monitor toxicity of heavy metals in water and wastewater. An isolate of industrial wastewater bacterium, Acinetobacter sp. DF4, was genetically modified with lux reporter gene to create a novel bioluminescent bacterial strain, designated as DF4/PUTK2. This bioreporter can investigate the toxicity through light inhibition due to cell death or metabolic burden and the specific stress effects of the tested soluble materials simultaneously. The use of Acinetobacter DF4/PUTK2 as a bioluminescent reporter for heavy metal toxicity testing and for the application of wastewater treatment influent toxicity screening is presented in this study. Among eight heavy metals tested, the bioluminescence of DF4/PUTK2 was most sensitive to Zn, Cd, Fe, Co, Cr followed by Cu in order of decreasing sensitivity. The same pattern of sensitivity was observed when several contaminated water and wastewater effluents were assayed. This work suggested that luxCDABE -marked Acinetobacter bacterium DF4/PUTK2 can be used to bioassay the ecotoxicity of wastewater and effluent samples contaminated with heavy metals. Using this assay, it is possible to pre-select the more toxic samples for further chemical analysis and to discard wastewater samples with low or no inhibition because they are not toxic to the environment.

摘要

本研究旨在利用全细胞生物传感器监测水和废水中重金属的毒性。从工业废水中分离出一株不动杆菌属细菌DF4,通过基因改造将lux报告基因导入其中,构建了一种新型的发光菌株,命名为DF4/PUTK2。这种生物报告器可以通过细胞死亡或代谢负担引起的光抑制以及受试可溶性物质的特定应激效应来研究毒性。本研究介绍了将不动杆菌DF4/PUTK2用作重金属毒性测试的生物发光报告器以及用于废水处理进水毒性筛选的应用。在所测试的八种重金属中,DF4/PUTK2的生物发光对锌、镉、铁、钴、铬最为敏感,其次是铜,敏感性依次降低。在检测几种受污染的地表水和废水排放物时,也观察到了相同的敏感性模式。这项工作表明,用luxCDABE标记的不动杆菌DF4/PUTK2可用于生物测定受重金属污染的废水和排放物样品的生态毒性。利用这种测定方法,可以预先选择毒性更强的样品进行进一步的化学分析,并丢弃抑制作用低或无抑制作用的废水样品,因为它们对环境无毒。

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