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基于微生物全细胞传感器的重金属生物利用度监测研究进展

[Advance in the bioavailability monitoring of heavy metal based on microbial whole-cell sensor].

作者信息

Hou Qi-Hui, Ma An-Shou, Zhuang Xiu-Liang, Zhuang Guo-Qiang

机构信息

Department of Environmental Biotechnology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.

出版信息

Huan Jing Ke Xue. 2013 Jan;34(1):347-56.

Abstract

Microbial whole-cell biosensor is an excellent tool to assess the bioavailability of heavy metal in soil and water. However, the traditional physicochemical instruments are applied to detect the total metal. Furthermore, microbial whole-cell biosensor is simple, rapid and economical in manipulating, and is thus a highly qualified candidate for emergency detection of pollution incidents. The biological component of microbial whole-cell biosensor mostly consists of metalloregulatory proteins and reporter genes. In detail, metalloregulatory proteins mainly include the MerR family, ArsR family and RS family, and reporter genes mainly include gfp, lux and luc. Metalloregulatory protein and reporter gene are related to the sensitivity, specificity and properties in monitoring. The bioavailability of heavy metals is alterable under different conditions, influenced by pH, chelate and detection methods and so on. Increasing the accumulation of intracellular heavy metal, modifying the metalloregulatory proteins and optimizing the detecting conditions are important for improving the sensitivity, specificity and accuracy of the microbial whole-cell biosensor. The future direction of microbial whole-cell biosensor is to realize the monitoring of pollutions in situ and on line.

摘要

微生物全细胞生物传感器是评估土壤和水中重金属生物有效性的优良工具。然而,传统的物理化学仪器用于检测总金属量。此外,微生物全细胞生物传感器操作简单、快速且经济,因此是污染事件应急检测的理想候选者。微生物全细胞生物传感器的生物组件主要由金属调节蛋白和报告基因组成。具体而言,金属调节蛋白主要包括MerR家族、ArsR家族和RS家族,报告基因主要包括gfp、lux和luc。金属调节蛋白和报告基因与监测中的灵敏度、特异性和特性相关。在不同条件下,重金属的生物有效性会发生变化,受pH值、螯合剂和检测方法等影响。增加细胞内重金属的积累、修饰金属调节蛋白以及优化检测条件对于提高微生物全细胞生物传感器的灵敏度、特异性和准确性至关重要。微生物全细胞生物传感器未来的发展方向是实现原位和在线污染监测。

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