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Integrated biological and chemical analysis of organochlorine compound pollution and of its biological effects in a riverine system downstream the discharge point

机译:排放点下游河流系统中有机氯化合物污染的综合生化分析及其生物学效应

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摘要

Pollution in riverine systems, along with its biological effects, may propagate downstream even at considerable distances. We analyzed the organochlorine compound (OC) pollution in a section of the low Ebro River (Northeast Spain) downstream a long-operating chlor-alkali plant. Maximal levels of OCs and of their associated dioxin-like biological activity occurred in residue samples from the plant, and persisted in river sediments some 40 km downstream (Xerta site). Biological analysis at multiple organization levels in local carp (Cyprinus carpio, EROD, Cyp1A mRNA expression in the liver, hepatosomatic index, condition factor, and micronuclei index in peripheral blood) showed a similar pattern, with a maximal impact in Asco, few kilometers downstream the plant, and a clear reduction at Xerta. This combination of chemical, molecular, cellular and physiological data allowed the precise assessment of the negative impact of the chlor-alkali plant on the quality of river sediments and on fish, and suggests that sediments may be a reservoir for toxic substances even in dynamic environments like rivers.
机译:河流系统中的污染及其生物学影响甚至可能在相当长的距离处向下游传播。我们分析了长期运营的氯碱工厂下游的埃布罗河下游(西班牙东北部)的一段地区中的有机氯化合物(OC)污染。在植物残渣样品中出现了最大的OCs及其相关的二恶英样生物活性,并持续存在于下游约40 km(Xerta站点)的河流沉积物中。在本地鲤鱼(鲤鱼,EROD,Cyp1A mRNA在肝脏中的表达,肝体指数,条件因子和外周血微核指数)的多个组织水平上的生物学分析显示出相似的模式,在下游几公里处对Asco的影响最大工厂,Xerta的产量明显减少。化学,分子,细胞和生理数据的结合,可以精确评估氯碱植物对河流沉积物和鱼类的质量的负面影响,并表明即使在动态环境中,沉积物也可能是有毒物质的储存库像河流。

著录项

  • 来源
    《Science of the total environment》 |2010年第22期|p.5592-5599|共8页
  • 作者单位

    Department of Environmental Chemistry, Institute of Environmental Assessment and Water Research (IDAEA-CSIC).Jordi Cirona, 18, 08034 Barcelona, Spain;

    Department of Environmental Chemistry, Institute of Environmental Assessment and Water Research (IDAEA-CSIC).Jordi Cirona, 18, 08034 Barcelona, Spain;

    Department of Environmental Chemistry, Institute of Environmental Assessment and Water Research (IDAEA-CSIC).Jordi Cirona, 18, 08034 Barcelona, Spain;

    Department of Environmental Chemistry, Institute of Environmental Assessment and Water Research (IDAEA-CSIC).Jordi Cirona, 18, 08034 Barcelona, Spain;

    Department of Environmental Chemistry, Institute of Environmental Assessment and Water Research (IDAEA-CSIC).Jordi Cirona, 18, 08034 Barcelona, Spain;

    Department of Environmental Chemistry, Institute of Environmental Assessment and Water Research (IDAEA-CSIC).Jordi Cirona, 18, 08034 Barcelona, Spain;

    Department of Environmental Chemistry, Institute of Environmental Assessment and Water Research (IDAEA-CSIC).Jordi Cirona, 18, 08034 Barcelona, Spain;

    Department of Environmental Chemistry, Institute of Environmental Assessment and Water Research (IDAEA-CSIC).Jordi Cirona, 18, 08034 Barcelona, Spain;

    Institut d'Ecologia Aquatica, Dept. Ciencies Ambientals, Ecologia, Universitat de Cirona, 17071 Cirona, Spain;

    Institut d'Ecologia Aquatica, Dept. Ciencies Ambientals, Ecologia, Universitat de Cirona, 17071 Cirona, Spain;

    Institut de Ciencies del Mar (ICM-CS1C), Pg. Maritim de la Barceloneta 37-49 08003 Barcelona, Spain;

    Department of Environmental Chemistry, Institute of Environmental Assessment and Water Research (IDAEA-CSIC).Jordi Cirona, 18, 08034 Barcelona, Spain;

    Department of Environmental Chemistry, Institute of Environmental Assessment and Water Research (IDAEA-CSIC).Jordi Cirona, 18, 08034 Barcelona, Spain,Institut de Ciencies del Mar (ICM-CS1C), Pg. Maritim de la Barceloneta 37-49 08003 Barcelona, Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    multimarker approach; biomonitoring; micronuclei; aryl hydrocarbon receptor; recombinant yeast assay; quantitative real-time pcr;

    机译:多标记方法生物监测微核芳烃受体重组酵母检测定量实时pcr;
  • 入库时间 2022-08-17 13:56:25

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