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首页> 外文期刊>RSC Advances >Qualitative and quantitative assessment of genotoxins using SRRz lysis reporter under the control of a newly designed SOS responsive promoter in Escherichia coli
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Qualitative and quantitative assessment of genotoxins using SRRz lysis reporter under the control of a newly designed SOS responsive promoter in Escherichia coli

机译:在大肠杆菌中新设计的SOS响应启动子的控制下,使用SRRz裂解报告基因对基因毒素进行定性和定量评估

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A new bacterial genotoxicity detection strain was constructed, in which the cell lysis gene of SRRz from a lambda phage was controlled by a new designed SOS responsive element, designated as Escherichia coli BL21/pUC-PST. The biosensor responded only after 0.5 h contact with mutagens and the changes in cell culture turbidity could be easily differentiated with the naked eyes from the control sample. This SOS/ SRRz system presented a dose-dependent manner to five model DNA-damaging agents with an improved detection sensitivity. The limits of detection (LODs) were 0.026 μM for mitomycin C, 320.4 μM for azinphos-methyl, 34.4 μM for methyl methanesulfonate, 4.6 μM for dithianone and 6.0 μM for dichlofluanid, which were much lower than previously reported. By performing binary and ternary mixture experiments, the toxic equivalency concept was validated in the E. coli SOS/ SRRz system by comparison with bioanalytical equivalent concentrations (BEQ) and overall toxic equivalent concentration (TEQ _(mixture) ) using Cr( VI ) as the reference compound. Pearson analysis indicated that a strong correlation existed between the TEQ _(mixture) and BEQ values. Thus the TEQ _(mixture) could be presented as the Cr( VI ) equivalent concentration from its dose–effect lysis profiles for the environmental sample. The proposed genotoxicity reporter strain allows for easier qualitative characterization and quantitative interpretation of the TEQ _(mixture) values using Cr( VI ) as the reference for environmental water samples.
机译:构建了一种新的细菌遗传毒性检测菌株,其中来自λ噬菌体的SRRz的细胞裂解基因由新设计的SOS反应元件(称为大肠杆菌BL21 / pUC-PST)控制。该生物传感器仅在与诱变剂接触0.5 h后才响应,并且用肉眼可以轻易地将细胞培养液浊度的变化与对照样品区分开。该SOS / SRRz系统以剂量依赖的方式对五种模型DNA破坏剂进行了检测,并提高了检测灵敏度。丝裂霉素C的检出限(LOD)为0.026μM,谷硫磷为320.4μM,甲磺酸甲酯为34.4μM,二噻酮为4.6μM,二氯氟苯胺为6.0μM,远低于先前报道。通过进行二元和三元混合物实验,通过与生物分析当量浓度(BEQ)和总毒性当量浓度(TEQ _(mixture))的比较,使用Cr(VI)作为在大肠杆菌SOS / SRRz系统中验证了毒性当量的概念。参考化合物。 Pearson分析表明,TEQ_(mixture)与BEQ值之间存在很强的相关性。因此,TEQ_(混合物)可以从其对环境样品的剂量效应裂解曲线中表示为Cr(VI)当量浓度。拟议的遗传毒性报告基因菌株允许使用Cr(VI)作为环境水样品的参考,更轻松地定性表征和定量解释TEQ_(mixture)值。

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