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A National-Scale Assessment of Mercury Bioaccumulation in United States National Parks Using Dragonfly Larvae As Biosentinels through a Citizen-Science Framework

机译:通过公民科学框架使用Dragonfly幼虫作为生物菜系的美国国家公园汞生物累积的国家规模评估

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摘要

We conducted a national-scale assessment of mercury (Hg) bioaccumulation in aquatic ecosystems, using dragonfly larvae as biosentinels, by developing a citizen-science network to facilitate biological sampling. Implementing a carefully designed sampling methodology for citizen scientists, we developed an effective framework for a landscape-level inquiry that might otherwise be resource limited. We assessed the variation in dragonfly Hg concentrations across >450 sites spanning 100 United States National Park Service units and examined intrinsic and extrinsic factors associated with the variation in Hg concentrations. Mercury concentrations ranged between 10.4 and 1411 ng/g dry weight across sites and varied among habitat types. Dragonfly total Hg (THg) concentrations were up to 1.8-fold higher in lotic habitats than in lentic habitats and 37% higher in waterbodies with abundant wetlands along their margins than those without wetlands. Mercury concentrations in dragonflies differed among families but were correlated (r~2 > 0.80) with each other, enabling adjustment to a consistent family to facilitate spatial comparisons among sampling units. Dragonfly THg concentrations were positively correlated with THg concentrations in both fish and amphibians from the same locations, indicating that dragonfly larvae are effective indicators of Hg bioavailability in aquatic food webs. We used these relationships to develop an integrated impairment index of Hg risk to aquatic ecosytems and found that 12% of site-years exceeded high or severe benchmarks of fish, wildlife, or human health risk. Collectively, this continental-scale study demonstrates the utility of dragonfly larvae for estimating the potential mercury risk to fish and wildlife in aquatic ecosystems and provides a framework for engaging citizen science as a component of landscape Hg monitoring programs.
机译:我们通过开发公民科学网络,在水生生态系统中对水生生态系统中的汞(HG)生物累计进行了国家规模评估,以促进生物学抽样。为公民科学家实施精心设计的抽样方法,我们为横向级查询开发了一个有效的框架,否则可能是资源有限的。我们评估了跨越100个美国国家公园服务单位的450个网站的蜻蜓HG浓度的变化,并检查了与Hg浓度变异相关的内在和外在因素。汞浓度范围在10.4和1411ng / g之间的干重,在栖息地类型中变化。蜻蜓总HG(THG)浓度高于奶栖息地的浓度高达1.8倍,而不是在偶然的栖息地,水上湿地的37%高37%,而沿着他们的利润率丰富的湿地比没有湿地的湿地。蜻蜓中的汞浓度在家庭之间不同,但彼此相关(R〜2> 0.80),使得能够调整一致的家庭,以便于采样单位之间的空间比较。蜻蜓THG浓度与来自同一地点的鱼和两栖动物中的THG浓度正相关,表明蜻蜓幼虫是水生食品网中HG生物利用度的有效指标。我们利用这些关系来发展对水生态菌类的HG风险的综合减值指数,发现12%的网站年超过了鱼,野生动物或人类健康风险的高或严重基准。集体,这项大陆级研究表明,蜻蜓幼虫的效用,用于估算水生生态系统中鱼类和野生动物的潜在汞风险,并为将公民科学作为景观HG监测计划的组成部分提供框架。

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  • 来源
    《Environmental Science & Technology》 |2020年第14期|8779-8790|共12页
  • 作者单位

    United States Geological Survey Forest and Rangeland Ecosystem Science Center Corvallis Oregon 97330 United States;

    United States Geological Survey Forest and Rangeland Ecosystem Science Center Corvallis Oregon 97330 United States;

    School of Forest Resources University of Maine Orono Maine 04469 United States Appalachian Mountain Club Gorham New Hampshire 03581 United States;

    National Park Service Air Resources Division National Resource Stewardship and Science Directorate Lakewood Colorado 80228 United States;

    United States Geological Survey Upper Midwest Water Science Center Middleton Wisconsin 53562 United States;

    Department of Biological Sciences Dartmouth College Hanover New Hampshire 03755 United States;

    United States Geological Survey Western Ecological Research Center Dixon California 95620 United States;

    United States Geological Survey Patuxent Wildlife Research Center Turners Falls Massachusetts 01376 United States;

    United States Geological Survey Forest and Rangeland Ecosystem Science Center Boise Idaho 83706 United States;

  • 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);
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  • 正文语种 eng
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