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Evidence for the Stepwise Stress Model:Gambusia holbrooki and Daphnia magna under Acid Mine Drainage and Acidified Reference Water Stress

机译:逐步应力模型的证据:酸性排水和酸化参考水分胁迫下的小球藻和水蚤

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摘要

The Stepwise Stress Model (SSM) states that a cascade of regulative behavioral responses with different intrinsic sensitivities and threshold values offers increased behavioral plasticity and thus a wider range of tolerance for environmental changes or pollutant exposures.We tested the SSM with a widely introduced fish Gambusia holbrooki (Girard) (Pisces,Poeciliidae) and the standard laboratory test species Daphnia magna Straus (Crustacea,Daphniidae).The stress was simulated by short-term exposure to acid mine drainage (AMD) and to acidified reference water (ACID).Recording of behavioral responses with the multispecies fresh water biomonitor (MFB) generated continuous time-dependent dose-response data that were modeled in three-dimensional (3D) surface plots.Both the pH-dependent mortalities and the strong linear correlations between pH and aqueous metals confirmed the toxicity of the AMD and ACID gradients,respectively,for fish and Daphnia,the latter being more sensitive.AMD stress at pH <=5.5 amplified circadian rhythmicity in both species,while ACID stress did so only in G.holbrooki.A behavioral Stepwise stress response was found in both species:D.magna decreased locomotion and ventilation (first step) (AMD,ACID),followed by increased ventilation (second step) (AMD).G.holbrooki decreased locomotion (first step) (AMD,ACID) and increased ventilation at intermediate pH levels (second step) (AMD).Both species,although from different taxonomic groups and feeding habits,followed the SSM,which might be expanded to a general concept for describing the behavioral responses of aquatic organims to pollution.Stepwise stress responses might be applied in online biomonitors to provide more sensitive and graduated alarm settings,hence optimizing the "early warning" detection of pollution waves.
机译:逐步压力模型(SSM)指出,具有不同内在敏感性和阈值的一系列调节行为响应可提供增强的行为可塑性,从而对环境变化或污染物暴露具有更大的耐受性。 holbrooki(Girard)(双鱼座,Poeciliidae)和标准实验室测试物种Daphnia magna Straus(甲壳纲,Daphniidae)。通过短期暴露于酸性矿山排水(AMD)和酸化的参考水(ACID)中来模拟应力。多物种淡水生物监测器(MFB)的行为反应生成了连续的时间依赖性剂量反应数据,这些数据以三维(3D)表面图为模型.pH依赖性死亡率和pH与水金属之间的强线性相关性分别确认了AMD和ACID梯度对鱼类和水蚤的毒性,后者对鱼和水蚤更敏感。 pH <= 5.5在两个物种中都增加了昼夜节律,而ACID胁迫仅在G.holbrooki中表现出来。在两个物种中都发现了行为性逐步应激反应:D.magna降低了运动和通气(第一步)(AMD,ACID),霍尔布鲁克(G.holbrooki)降低了运动能力(第一步)(AMD,ACID),并在中等pH值下增加了通风(第二步)(AMD)。两种物种,尽管来自不同的分类学组和遵循SSM的摄食习惯,可以将其扩展为描述水生生物对污染的行为响应的一般概念。逐步的压力响应可能会应用于在线生物监测器中,以提供更敏感和渐进的警报设置,从而优化“预警”。检测污染波。

著录项

  • 来源
    《Environmental Science & Technology》 |2005年第11期|p.4150-4158|共9页
  • 作者单位

    Department of Biology,University of Aveiro,Campus Santiago,3810-193 Aveiro,Portugal;

    Department of Biology,University of Aveiro,Campus Santiago,3810-193 Aveiro,Portugal;

    Department of Biology,University of Aveiro,Campus Santiago,3810-193 Aveiro,Portugal;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

  • 入库时间 2022-08-17 14:07:52

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