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Assessment of heavy metal bioavailability using Escherichia coli zntAp::lux and copAp::lux-based biosensors

机译:使用基于大肠杆菌zntAp :: lux和copAp :: lux的生物传感器评估重金属的生物利用度

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摘要

To determine the amount of metals detectable by bacteria, two plasmids were constructed in which the metal-inducible zntA and copA promoters from Escherichia coli were fused to a promoterless Vibrio fischeri luxCDABE operon. The luminescence response of E. coli bearing these constructs was studied as a function of the concentration of several heavy metals and was shown to be influenced by cell growth phase. The zntAp::lux fusion is induced mainly by salts of cadmium, lead, mercury and zinc, with significant induction by other metal ions, whereas the specificity of copA induction is restricted to copper and silver. In optimized assay conditions, metals could be detected at threshold concentrations ranging from nanomolar to micromolar, with maximal induction observed after only 60–100 min incubation. The ability of these biosensor strains to distinguish bioavailable quantities of metals in a sample makes them good candidates as useful tools to monitor metal contamination in environmental samples.
机译:为了确定细菌可检测的金属量,构建了两个质粒,其中将大肠杆菌的金属诱导性zntA和copA启动子融合到无启动子费氏弧菌luxCDABE操纵子上。研究了带有这些构建体的大肠杆菌的发光响应与几种重金属浓度的关系,并显示出受细胞生长阶段的影响。 zntAp :: lux融合主要是由镉,铅,汞和锌的盐诱导的,其他金属离子则具有明显的诱导作用,而copA诱导的特异性仅限于铜和银。在优化的分析条件下,可以在从纳摩尔到微摩尔的阈值浓度下检测金属,在仅孵育60-100分钟后观察到最大诱导。这些生物传感器菌株区分样品中金属的生物可利用量的能力使其成为监测环境样品中金属污染的有用工具。

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  • 来源
    《Applied Microbiology and Biotechnology》 |2001年第6期|712-716|共5页
  • 作者单位

    U.R. Ecotoxicité Biodiversité Santé Environnementale Université de Metz Campus Bridoux – Rue du Général Delestraint 57070 Metz Borny France;

    U.R. Ecotoxicité Biodiversité Santé Environnementale Université de Metz Campus Bridoux – Rue du Général Delestraint 57070 Metz Borny France;

    U.R. Ecotoxicité Biodiversité Santé Environnementale Université de Metz Campus Bridoux – Rue du Général Delestraint 57070 Metz Borny France;

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  • 入库时间 2022-08-18 01:42:26

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