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利用微生物传感器检测六氢-1,3,5-三硝基-1,3,5-三嗪(RDX)。

Detection of hexahydro-1,3-5-trinitro-1,3,5-triazine (RDX) with a microbial sensor.

作者信息

Eberly Jed O, Mayo Michael L, Carr Matthew R, Crocker Fiona H, Indest Karl J

机构信息

U.S. Army Engineer Research and Development Center, Environmental Laboratory.

Montana State University, Central Ag Research Center.

出版信息

J Gen Appl Microbiol. 2019 Jul 19;65(3):145-150. doi: 10.2323/jgam.2018.08.001. Epub 2019 Jan 29.

Abstract

Explosives such as hexahydro-1,3,5-trinitro-1,3,5-triazine (RDX) are common contaminants found in soil and groundwater at military facilities worldwide, but large-scale monitoring of these contaminants at low concentrations is difficult. Biosensors that incorporate aptamers with high affinity and specificity for a target are a novel way of detecting these compounds. This work describes novel riboswitch-based biosensors for detecting RDX. The performance of the RDX riboswitch was characterized in Escherichia coli using a range of RDX concentrations from 0-44 μmol l. Fluorescence was induced at RDX concentrations as low as 0.44 μmol l. The presence of 4.4 μmol l RDX induced an 8-fold increase in fluorescence and higher concentrations did not induce a statistically significant increase in response.

摘要

六氢-1,3,5-三硝基-1,3,5-三嗪(RDX)等爆炸物是全球军事设施土壤和地下水中常见的污染物,但对这些低浓度污染物进行大规模监测很困难。结合对目标具有高亲和力和特异性的适体的生物传感器是检测这些化合物的一种新方法。这项工作描述了用于检测RDX的新型基于核糖开关的生物传感器。在大肠杆菌中使用一系列0-44μmol l的RDX浓度对RDX核糖开关的性能进行了表征。在低至0.44μmol l的RDX浓度下诱导产生荧光。4.4μmol l RDX的存在使荧光增加了8倍,更高的浓度并未诱导出统计学上显著的响应增加。

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