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首页> 外文期刊>The Science of the Total Environment >Foraging behaviour of top predators mediated by pollution of psychoactive Pharmaceuticals and effects on ecosystem stability
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Foraging behaviour of top predators mediated by pollution of psychoactive Pharmaceuticals and effects on ecosystem stability

机译:精神药物受污染介导的顶级掠食者的觅食行为及其对生态系统稳定性的影响

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摘要

Although pharmaceuticals are recognized as a major threat to aquatic ecosystems worldwide, little is known about their ecological effect on aquatic biota and ecosystems. Drug-induced behaviour changes could have a substantial impact on consumer-resource interactions influencing stability of the community and ecosystem. We combined laboratory experiments and functional response modelling to investigate effects of real wastewater treatment plant (WWTP) effluent, as well as environmentally relevant concentrations of the antidepressants citalopram and opioid pain medication tramadol, on trophic interactions. Our biological system consisted of dragonfly Aeshna cyanea larvae as predator of common carp Cyprinus carpio fry. Exposure to WWTP effluent significantly increased A. cyanea maximum feeding rate, while those parameters in tramadol and citalopram-exposed larvae were significantly lower from unexposed control group. This suggested the potential of all tested pollutants to have an effect on consumer-resource equilibrium in aquatic ecosystems. While WWTP effluent strengthened interaction strength (IS) of consumer-resource interaction dynamics making the food web more vulnerable to fluctuation and destabilization, tramadol and citalopram could inhibit the potential oscillations of the consumer-resource system by weakening the IS. Similar studies to reveal the potential of pervasive pharmaceuticals to change of consumer-resource interactions dynamics are needed, especially when real WWTP effluent consisting of mixture of various pharmaceuticals displayed very different effect from single compounds tested. (C) 2019 Elsevier B.V. All rights reserved.
机译:尽管人们公认药品是全球范围内水生生态系统的主要威胁,但人们对其药物对水生生物和生态系统的生态影响知之甚少。药物引起的行为变化可能会对影响社区和生态系统稳定性的消费者与资源之间的相互作用产生重大影响。我们结合了实验室实验和功能响应模型,以研究实际废水处理厂(WWTP)废水以及抗抑郁药西酞普兰和阿片类镇痛药物曲马多的环境相关浓度对营养相互作用的影响。我们的生物系统由蜻蜓Aeshna cyanea幼虫组成,它们是鲤鱼鲤鱼苗的捕食者。暴露于污水处理厂废水显着提高了蓝藻最大摄食率,而曲马多和西酞普兰暴露的幼虫中的这些参数比未暴露的对照组显着降低。这表明所有测试的污染物都可能对水生生态系统中的消费者资源平衡产生影响。虽然污水处理厂废水加强了消费者与资源之间相互作用的相互作用强度(IS),使食物网更容易受到波动和不稳定的影响,但是曲马多和西酞普兰可以通过削弱IS来抑制消费者与资源系统的潜在振荡。需要进行类似的研究来揭示普及型药物改变消费者与资源相互作用动力学的潜力,尤其是当由各种药物混合物组成的真实污水处理厂废水显示出与所测试的单个化合物截然不同的效果时。 (C)2019 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《The Science of the Total Environment》 |2019年第20期|655-661|共7页
  • 作者单位

    Univ South Bohemia Ceske Budejovice, Fac Fisheries & Protect Waters, South Bohemian Res Ctr Aquaculture & Biodivers Hy, Zatisi 728-2, CZ-38925 Vodnany, Czech Republic;

    Univ South Bohemia Ceske Budejovice, Fac Fisheries & Protect Waters, South Bohemian Res Ctr Aquaculture & Biodivers Hy, Zatisi 728-2, CZ-38925 Vodnany, Czech Republic;

    Univ South Bohemia Ceske Budejovice, Fac Fisheries & Protect Waters, South Bohemian Res Ctr Aquaculture & Biodivers Hy, Zatisi 728-2, CZ-38925 Vodnany, Czech Republic;

    Univ South Bohemia Ceske Budejovice, Fac Fisheries & Protect Waters, South Bohemian Res Ctr Aquaculture & Biodivers Hy, Zatisi 728-2, CZ-38925 Vodnany, Czech Republic;

    Univ South Bohemia Ceske Budejovice, Fac Fisheries & Protect Waters, South Bohemian Res Ctr Aquaculture & Biodivers Hy, Zatisi 728-2, CZ-38925 Vodnany, Czech Republic;

    Univ South Bohemia Ceske Budejovice, Fac Fisheries & Protect Waters, South Bohemian Res Ctr Aquaculture & Biodivers Hy, Zatisi 728-2, CZ-38925 Vodnany, Czech Republic;

    Univ South Bohemia Ceske Budejovice, Fac Fisheries & Protect Waters, South Bohemian Res Ctr Aquaculture & Biodivers Hy, Zatisi 728-2, CZ-38925 Vodnany, Czech Republic;

    Univ South Bohemia Ceske Budejovice, Fac Fisheries & Protect Waters, South Bohemian Res Ctr Aquaculture & Biodivers Hy, Zatisi 728-2, CZ-38925 Vodnany, Czech Republic;

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

    Tramadol; Citalopram; WWTP; Functional response; Maximum feeding rate; Predator-prey interaction;

    机译:曲马多;西酞普兰;污水处理厂;功能反应;最大摄食率;捕食者与猎物的相互作用;

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