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首页> 外文期刊>The Science of the Total Environment >Movement of synthetic organic compounds in the food web after the introduction of invasive quagga mussels (Dreissena bugensis) in Lake Mead, Nevada and Arizona, USA
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Movement of synthetic organic compounds in the food web after the introduction of invasive quagga mussels (Dreissena bugensis) in Lake Mead, Nevada and Arizona, USA

机译:在美国湖,内华达州和亚利桑那州的侵入性Quagga贻贝(Draisensena Bugensis)引入后的合成有机化合物在食品网中的运动

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摘要

Introductions of dreissenid mussels in North America have been a significant concern over the last few decades. This study assessed the distribution of synthetic organic compounds (SOCs) in the food web of Lake Mead, Nevada/Arizona, USA and how this distribution was influenced by the introduction of invasive quagga mussels. A clear spatial gradient of SOC concentrations in water was observed between lake basins downstream of populated areas and more rural areas. Within the food web, trophic magnification factors (TMF) indicated statistically significant biomagnification for nine, and biodilution for two, of 22 SOCs examined. The highest value recorded was for PCB118 (TMF, 5.14), and biomagnification of methyl triclosan (TMF, 3.85) was also apparent. Biodilution was observed for Tonalide® (0.06) and Galaxolide® (0.38). Total SOC concentration in quagga mussels was higher than in three pelagic fishes. Also, 19 of 20 SOC examined in Largemouth Bass (Micropterus salmoides) had substantially lower concentrations in 2013, when quagga mussels had become well established, than in 2007/08, soon after quagga mussels were introduced. Estimates of SOC concentrations in the water column and quagga mussels suggest that a considerable portion (~10.5%) of the SOC mass in the lake has shifted from the pelagic to the benthic environments due to quagga mussel growth. These observations suggest that benthic species, such as the endangered Razorback Sucker, may be experiencing increased risk of SOC exposure. In addition, stable isotope analysis (carbon and nitrogen) indicated a decrease in the nutritional value of zooplankton to consumers (e.g., Razorback Sucker larvae) since quagga mussels became established. These changes could affect Razorback Sucker larval survival and recruitment. Results from this study strongly suggest that the introduction of quagga mussels has greatly altered the dynamics of SOCs and other processes in the food web of Lake Mead.
机译:在过去的几十年里,北美的德累累累贻贝介绍一直是一个重要的问题。本研究评估了米德,内华达州/亚利桑那州,美国湖泊,内华达州/亚利桑那州的食品网中的合成有机化合物(SOC)以及这种分布如何受到侵入性Quagga贻贝的影响。在人口稠密地区下游的湖泊盆地和农村地区的湖泊盆地之间观察到SOC浓度的清晰空间梯度。在食物网中,营养额放大因子(TMF)表明九个和两个SOC的九个和生物硫化的统计学显着的生物磁化。记录的最高值为PCB118(TMF,5.14),甲基三氯烷(TMF,3.85)的生物镀锌也是显而易见的。为Tonalide®(0.06)和Galaxolide®(0.38)观察到生物硫化。 Quagga贻贝中的SoC集中总量高于三种骨质鱼类。此外,在苏格兰鲈鱼(MicroOpterus Sallmoides)中审查的19个SoC中的19个,2013年浓度大幅下降,而Quagga Mussels已成立,而不是2007/08,在Quagga Mussels介绍后很快就会出现。水塔和Quagga贻贝中SoC浓度的估计表明,由于Quagga Massel Grower,湖中的相当大(约10.5%)SoC质量从骨库到底栖环境转移。这些观察结果表明,底栖物种,如濒危剃刀吸盘,可能会出现对SoC暴露的风险增加。此外,由于Quagga Mussels成立,稳定同位素分析(碳和氮)表明浮游动物的营养价值降低了消费者(例如,剃刀吸盘幼虫)。这些变化可能会影响razorback吸盘幼虫生存和招聘。这项研究的结果强烈表明,Quagga Mussels的引入极大地改变了SoC的动态和其他过程中湖米德的食物网。

著录项

  • 来源
    《The Science of the Total Environment》 |2021年第15期|141845.1-141845.15|共15页
  • 作者单位

    U.S. Geological Survey (Emeritus) 213 Hillcrest Drive High Point NC 27262 United States of America;

    U.S. Geological Survey California Water Science Center 2730 N Deer Run Rd. Carson City NV 89701 United States of America;

    U.S. Geological Survey Texas Cooperative Fish and Wildlife Research Unit Texas Tech University Lubbock TX 79409-2120 United States of America;

    U.S. Geological Survey Columbia Environmental Research Center 4200 New Haven Road Columbia MO 65201 United States of America;

    U.S. Geological Survey Columbia Environmental Research Center 4200 New Haven Road Columbia MO 65201 United States of America;

    U.S. Fish and Wildlife Service 1340 Financial Blvd Suite 234 Reno NV 89502 United States of America National Park Service 1201 Oakridge Dr. Suite 250 Fort Collins CO 80525;

    Desert Research Institute 2215 Raggio Parkway Reno NV 89512 United States of America;

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

    Endangered species; Contaminants; Stable isotopes; Trophic magnification; Bioaccumulation; Zooplankton;

    机译:濒危物种;污染物;稳定同位素;营养倍率;生物累积;浮游动物;

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