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Influence of Isolation on the Recovery of Pond Mesocosms from the Application of an Insecticide. I. Study Design and Planktonic Community Responses

机译:隔离对施用杀虫剂后池塘中膜恢复的影响。 I.研究设计和浮游生物社区反应

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摘要

The inflvence of relative isolation on the ecological recovery of freshwater outdoor mesocosm communities after an acute toxic stress was assessed in a 14-month-long study. A single concentration of deltamethrin was applied to 8 out of 16 outdoor 9-m~3 mesocosms to create a rapid decrease of the abundance of arthropods. To discriminate between external and internal recovery mechanisms, four treated and four untreated (control) mesocosms were covered with 1-mm mesh screen lids. The dynamics of planktonic communities were monitored in the four types of ponds. The abundance of many phytoplankton taxa increased after deltamelhrin addition, but the magnitude of most increases was relatively small, probably due to low nutrient availability and the survival of rotifers. The greatest impact on zooplankton was seen in Daphniidae and, to a lesser extent, calanoid copepods. Recovery (defined as when statistical analysis failed to detect a difference in the abundance between the deltamethrin-treated ponds and corresponding control ponds for two consecutive sampling dates) of Daphniidae was observed in the water column 105 and 77 d after deltamethrin addition in open and covered mesocosms. respectively, and <42 d for both open and covered ponds at the surface of the sediments. Rotifers did not proliferate, probably because of the survival of predators (e.g., cyclopoid copepods). These results confirm that the recovery of planktonic communities after exposure to a strong temporary chemical stress mostly depends upon internal mechanisms (except for larvae of the insect Chaoborus sp.) and that recovery dynamics are controlled by biotic factors, such as the presence of dormant forms and selective survival of predators.
机译:在一项为期14个月的研究中,评估了相对隔离对急性毒性胁迫后淡水室外中观宇宙群落生态恢复的影响。在16个室外9-m〜3的中型空间中的8个中,将单一浓度的溴氰菊酯应用于其中的8个,以快速减少节肢动物的数量。为了区分外部和内部恢复机制,四个处理过的和四个未处理(对照)的内膜被1毫米筛孔覆盖。在四种类型的池塘中监测了浮游生物的动态。加入deltamelhrin后,许多浮游植物类群的数量增加,但是大部分增加的幅度相对较小,这可能是由于养分利用率低和轮虫的存活所致。在浮萍科中,对浮游动物的影响最大,而在较小的程度上,则是对an类co足动物的影响。在开敞和遮盖地添加溴氰菊酯后105和77 d的水柱中观察到水蚤的恢复程度(定义为统计分析未能检测到溴氰菊酯处理过的池塘和相应的对照池塘在两个连续的采样日期之间的丰度差异)。中观对于沉积物表面的开放式池塘和有盖池塘,均小于42 d。轮虫没有增殖,可能是由于捕食者(例如,环足类co足类)的生存所致。这些结果证实,暴露于强烈的临时化学胁迫后,浮游生物群落的恢复主要取决于内部机制(昆虫潮虫的幼虫除外),并且恢复动力学受生物因素(例如休眠形式)的控制。和捕食者的选择性生存。

著录项

  • 来源
    《Environmental toxicology and chemistry》 |2007年第6期|1265-1279|共15页
  • 作者单位

    UMR985 INRA-Agrocampus 'Ecobiologie et Qualite des Hydrosystemes Continentaux', Equipe Ecotoxicologie et Qualite des Milieux Aquatiques, 65 Rue de Saint-Brieuc, F35042 Rennes Cedex, France;

    Department of Civil, Environmental & Architectural Engineering, University of Kansas, Lawrence. Kansas 66045, USA;

    UMR985 INRA-Agrocampus 'Ecobiologie et Qualite des Hydrosystemes Continentaux', Equipe Ecotoxicologie et Qualite des Milieux Aquatiques, 65 Rue de Saint-Brieuc, F35042 Rennes Cedex, France;

    INRA, Unite Experimentale Ecologie et Ecotoxicologie Aquatique, 65 Rue de Saint-Brieuc, F35042 Rennes Cedex, France;

    UMR985 INRA-Agrocampus 'Ecobiologie et Qualite des Hydrosystemes Continentaux', Equipe Ecotoxicologie et Qualite des Milieux Aquatiques, 65 Rue de Saint-Brieuc, F35042 Rennes Cedex, France;

    Department of Civil, Environmental & Architectural Engineering, University of Kansas, Lawrence. Kansas 66045, USA;

    UMR985 INRA-Agrocampus 'Ecobiologie et Qualite des Hydrosystemes Continentaux', Equipe Ecotoxicologie et Qualite des Milieux Aquatiques, 65 Rue de Saint-Brieuc, F35042 Rennes Cedex, France;

    UMR985 INRA-Agrocampus 'Ecobiologie et Qualite des Hydrosystemes Continentaux', Equipe Ecotoxicologie et Qualite des Milieux Aquatiques, 65 Rue de Saint-Brieuc, F35042 Rennes Cedex, France;

  • 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
  • 关键词

    ecological recovery; connectivity; aquatic mesocosms; higher-tier risk assessment; deltamethrin;

    机译:生态恢复;连接性;水生介体;更高层的风险评估;溴氰菊酯;
  • 入库时间 2022-08-17 13:35:37

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