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金属生物利用度的微生物报告器。

Microbial reporters of metal bioavailability.

机构信息

Institute of life Sciences, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.

出版信息

Microb Biotechnol. 2008 Jul;1(4):320-30. doi: 10.1111/j.1751-7915.2008.00022.x.

Abstract

When attempting to assess the extent and the implications of environmental pollution, it is often essential to quantify not only the total concentration of the studied contaminant but also its bioavailable fraction: higher bioavailability, often correlated with increased mobility, signifies enhanced risk but may also facilitate bioremediation. Genetically engineered microorganisms, tailored to respond by a quantifiable signal to the presence of the target chemical(s), may serve as powerful tools for bioavailability assessment. This review summarizes the current knowledge on such microbial bioreporters designed to assay metal bioavailability. Numerous bacterial metal-sensor strains have been developed over the past 15 years, displaying very high detection sensitivities for a broad spectrum of environmentally significant metal targets. These constructs are based on the use of a relatively small number of gene promoters as the sensing elements, and an even smaller selection of molecular reporter systems; they comprise a potentially useful panel of tools for simple and cost-effective determination of the bioavailability of heavy metals in the environment, and for the quantification of the non-bioavailable fraction of the pollutant. In spite of their inherent advantages, however, these tools have not yet been put to actual use in the evaluation of metal bioavailability in a real environmental remediation scheme. For this to happen, acceptance by regulatory authorities is essential, as is a standardization of assay conditions.

摘要

当试图评估环境污染的程度和影响时,通常不仅需要定量分析研究污染物的总浓度,还需要定量分析其生物可利用部分:生物可利用度较高,通常与迁移性增强相关,意味着风险增加,但也可能促进生物修复。经过基因工程改造的微生物,可以通过可量化的信号对目标化学物质的存在作出响应,因此可以作为生物可利用性评估的有力工具。本综述总结了目前关于用于测定金属生物可利用性的微生物生物报告器的知识。在过去的 15 年中,已经开发出了许多细菌金属传感器菌株,它们对广泛的环境相关金属靶标具有非常高的检测灵敏度。这些构建体基于使用相对较少数量的基因启动子作为传感元件,以及更小的分子报告系统选择;它们构成了一组用于简单、经济高效地确定环境中重金属生物可利用性和定量测定污染物非生物可利用部分的潜在有用工具。然而,尽管它们具有内在的优势,但这些工具尚未在实际的环境修复方案中用于评估金属的生物可利用性。要实现这一点,监管机构的认可以及分析条件的标准化是必不可少的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c8d/3815395/38bf7de9cc37/mbt0001-0320-f1.jpg

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