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利用大型溞的彗星试验检测 DNA 损伤:在淡水生物监测中的应用。

DNA damage detection by Comet Assay on Daphnia magna: Application in freshwater biomonitoring.

机构信息

Department of Chemistry, Life Sciences and Environmental Sustainability, Parco Area delle Scienze 11/a, 43124 Parma, Italy.

Department of Chemistry, Life Sciences and Environmental Sustainability, Parco Area delle Scienze 11/a, 43124 Parma, Italy; Centre for Molecular and Translational Oncology-COMT, University of Parma, Parco Area delle Scienze 11/a, 43124 Parma, Italy.

出版信息

Sci Total Environ. 2020 Feb 25;705:135780. doi: 10.1016/j.scitotenv.2019.135780. Epub 2019 Nov 27.

Abstract

Monitoring of water genotoxicity still remains underexploited in risk assessment. The present study aimed at standardizing and evaluating the sensitivity and applicability of the Comet Assay adapted for Daphnia magna in genotoxicological investigations in freshwater environments. Two sampling campaigns (2014-2015) were performed in the watercourses of a pilot basin located in the Parma district (Italy). Fourteen sampling stations with different Ecological Status and/or EBI values were selected, all with a good Chemical Status according to the EU-Water Framework Directive 2000/60. The Alkaline Comet Assay was performed on 48 h-aged daphnids exposed (24 h) to 23 water samples. In parallel, the acute toxicity test was carried out. Daphnids exposed to samples, collected upstream the main watercourses in non-impacted areas, showed low DNA migration (Tail Intensity percentage - TI% - in the range 2.97-13.21), similar to laboratory controls. An increase in genotoxicity (TI% in the range 20-40) proceeding from the mountain towards the plain area was observed, in agreement with the land uses and the ES/EBI values of the stations. The highest genotoxic damage was observed after exposure to samples from watercourses of the minor hydrographic network in the plain area and waterbodies receiving wastewater treatment plant outflows. A modified version of the Comet Assay able to identify the presence of genotoxins inducing DNA oxidative damage, after standardization, was applied to daphnids treated with waters from 4 selected monitoring stations. The presence of oxidative contaminants was detected downstream a wastewater treatment plant outflow. The Comet Assay on D. magna has proven to be sensitive and able to discriminate among differently impacted areas and might be applied routinely. The FPG-Comet proved to be able to highlight the presence of contaminants causing oxidative stress. In our knowledge, this is the first time that Comet Assay on Daphnia magna is successfully applied for freshwater monitoring.

摘要

在风险评估中,对水遗传毒性的监测仍然未得到充分利用。本研究旨在标准化和评估适应于淡水环境遗传毒理学研究的大型溞彗星试验的敏感性和适用性。在位于帕尔马地区(意大利)的试点盆地的水道中进行了两次采样活动(2014-2015 年)。选择了 14 个具有不同生态状况和/或 EBI 值的采样站,所有站点根据欧盟水框架指令 2000/60 均具有良好的化学状况。对 48 小时龄的大型溞进行了碱性彗星试验,使其暴露于 23 个水样中(暴露 24 小时)。同时,还进行了急性毒性试验。暴露于在未受影响地区的主要水道上游采集的样本中的大型溞显示出低 DNA 迁移(尾部强度百分比-TI%-范围为 2.97-13.21),与实验室对照相似。从山区到平原地区,观察到遗传毒性增加(TI%范围为 20-40),这与土地利用和站位的 ES/EBI 值一致。在平原地区的小型水网水道和接收废水处理厂流出物的水体中采集的样本暴露后,观察到最高的遗传毒性损伤。在对来自 4 个选定监测站的水进行处理后,应用经过标准化的改良彗星试验来鉴定诱导 DNA 氧化损伤的遗传毒素的存在。在废水处理厂流出物的下游检测到了氧化污染物的存在。对大型溞进行的彗星试验已被证明具有敏感性,并能够区分不同受影响的地区,并且可能常规应用。FPG-彗星试验已被证明能够突出存在引起氧化应激的污染物。据我们所知,这是首次成功地将大型溞彗星试验应用于淡水监测。

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