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首页> 外文期刊>Marine biotechnology >Detection of Mercury in Aquatic Environments Using EPRE Reporter Zebrafish
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Detection of Mercury in Aquatic Environments Using EPRE Reporter Zebrafish

机译:使用EPRE Reporter斑马鱼在水生环境中检测汞

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It has been proposed that transgenic zebrafish could be designed to detect low levels of chemical contaminants that cause oxidative stress in aquatic environments, such as heavy metals or pesticides. In this paper, we describe such a transgenic zebrafish that produces a luciferase-green fluorescent protein (LUC-GFP) fusion protein under conditions of oxidative stress. The reporter gene expression is under the regulation of the electrophile responsive element (EPRE), which activates gene expression in response to oxidative stressors. The GFP component of this fusion protein allows us to visually detect reporter gene activity in live animals to determine if activity is localized to a particular tissue. The luciferase component is capable of returning a quantitative assessment of reporter gene activity that allows us to determine if reporter gene activity is directly correlated to the concentration of the chemical inducer. We have tested this reporter construct in both transient and stable transgenic fish after exposure to a range of HgCl(2) concentrations. GFP expression from the EPRE-LUC-GFP construct was inducible in transient assays but was below the limit of detection in stable lines. In contrast, we observed inducible luciferase activity in both transient assays and stable lines treated with HgCl(2). We conclude that the EPRE is capable of driving reporter gene expression in a whole animal assay under conditions of oxidative stress. Furthermore, expression was induced at HgCl(2) concentrations that do not result in obvious morphological defects, making this approach useful for the detection of low levels of oxidative contaminants in aquatic environments.
机译:已经提出转基因斑马鱼可以设计成检测低水平的化学污染物,这些化学污染物在水生环境中引起氧化应激,例如重金属或农药。在本文中,我们描述了这样一种转基因斑马鱼,它在氧化应激条件下产生荧光素酶-绿色荧光蛋白(LUC-GFP)融合蛋白。报道基因的表达受亲电反应元件(EPRE)的调节,该元件可响应氧化应激激活基因表达。该融合蛋白的GFP成分使我们能够目测检测活体动物中的报告基因活性,以确定活性是否定位于特定组织。萤光素酶成分能够对报告基因活性进行定量评估,从而使我们能够确定报告基因活性是否与化学诱导剂的浓度直接相关。在暴露于一定浓度的HgCl(2)浓度后,我们已经在瞬时和稳定的转基因鱼中测试了此报告基因构建物。来自EPRE-LUC-GFP构建体的GFP表达在瞬时测定中可诱导,但低于稳定株系中的检测极限。相反,我们在瞬态测定法和用HgCl(2)处理的稳定品系中均观察到诱导型荧光素酶活性。我们得出结论,EPRE能够在氧化应激条件下的整个动物实验中驱动报告基因的表达。此外,在HgCl(2)浓度下诱导表达,不会导致明显的形态缺陷,这使该方法可用于检测水生环境中的低水平氧化性污染物。

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