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Genotoxic effects of exposure to waterborne uranium, dietary methylmercury and hyperoxia in zebrafish assessed by the quantitative RAPD-PCR method

机译:用定量RAPD-PCR方法评估水载铀,膳食甲基汞和高氧化的基因毒性作用

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摘要

Release of chemicals and fluctuation in oxygen content in the aquatic environment represent hazards for fish health. The present study aims at assessing the genotoxic impact of low concentration exposures to waterborne uranium (U), dietary methyl mercury (MeHg) and hyperoxia in zebrafish by using the RAPD-PCR quantitative method. A significant increase of the number hybridization sites was observed in fish exposed to 30 μg U/L and 100 μg U/L and hyperoxia. In fish exposed to MeHg (13.5 μg Hg/g, dry weight) no change in the number of hybridization sites were found, however, the frequency of PCR products showed significant variation. The mechanisms of toxicity leading to DNA damage in fish exposed to waterborne uranium, mercury and hyperoxia are discussed and the results from the literature given by the comet assay, micronucleus test and RAPD-PCR method compared. The study provides new data regarding the genotoxic effects of MeHg, hyperoxia and low U concentrations (30 μg U/L) in fish. The present work highlights the use of the RAPD-PCR as a sensitive method in the assessment of chemically-induced DNA damage in animals.
机译:在水生环境中释放化学品和氧含量波动,代表了鱼类健康的危害。本研究旨在通过使用RAPD-PCR定量方法评估低浓度暴露对水性铀(U),膳食甲基汞(MEHG)和高氧的遗传毒性影响。在暴露于30μgU / L和100μgU / L和高氧的鱼中观察到数量杂交位点的显着增加。在暴露于MeHG的鱼中(13.5μg/ g,干重)未发现杂交位点​​的数量没有变化,但PCR产物的频率显示出显着的变化。讨论了暴露于水性铀,汞和高氧的鱼类DNA损伤的毒性机制,并通过彗星测定,微核试验和RAPD-PCR方法给出的文献结果。该研究提供了有关MeHG,高氧和低U浓度(30μgU / L)的遗传毒性效应的新数据。目前的工作突出了RAPD-PCR作为在评估动物中的化学诱导的DNA损伤中的敏感方法。

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