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Aquatic community response to ZequanoxRTM: A mesocosm experiment

机译:水生社区对ZequanoxRTM的反应:中观实验

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摘要

Zebra and quagga mussels (Dreissena spp.) are European freshwater molluscs that have invaded most major inland water systems across North America, resulting in billions of dollars in damages and losses to fisheries, recreational water use, infrastructure, and industry each year. ZequanoxRTM, a biopesticide made from soil bacteria, has been advertised as dreissenid-selective and environmentally safe. Health Canada has approved the use of ZequanoxRTM in hydroelectric facilities, which may indicate movement toward open-water use in Canada, as has occurred in the USA and Ireland. Data from singlespecies assays indicate that exposure to ZequanoxRTM concentrations near or below those recommended for open-water applications can cause mortality (often ≥50%) in fish and invertebrates. However, little is known about the non-target impacts of applying ZequanoxRTM in an open-water setting, given that toxicants can behave differently in natural versus laboratory environments and because single-species tests are unable to characterize indirect effects such as pesticide-mediated changes to inter-species interactions like competition and predation.;Using a six-week-long replicated aquatic mesocosm experiment, I simulated open-water applications of ZequanoxRTM (100 mg/L of the active ingredient) to determine the responses of primary producers, zooplankton, and macroinvertebrates to ZequanoxRTM exposure in a complex aquatic environment. Short-term increases occurred in phytoplankton and periphyton biomass (250--350% of controls), abundance of large cladoceran grazers (700% of controls), and insect emergence (490% of controls). Large declines initially occurred among small cladoceran zooplankton (88--94% reductions in Chydorus sphaericus, Ceriodaphnia lacustris, and Scapheloberis mucronata), but abundances generally rebounded within three weeks. Declines also occurred in amphipods Hyalella azteca (mean abundance 77% less than controls) and gastropods Viviparus georgianus (survival 73 +/-16%), which did not recover during the experiment. Short-term impacts to water quality included a decrease in dissolved oxygen (minimum 1.2 mg/L), despite aeration of the mesocosms.;This research may assist regulators and managers in assessing the ecological risks of using ZequanoxRTM in open-water systems and support informed decision-making about dreissenid control, including for established infestations, rapid response to new invasions, and efforts under the Species at Risk Act to protect and restore native mussel habitats that have been threatened and damaged by dreissenid invasion.
机译:斑马和斑贝贻贝(Dreissena spp。)是欧洲的淡水软体动物,已侵入北美大部分主要的内陆水系,每年给渔业,休闲用水,基础设施和工业造成数十亿美元的损失。 ZequanoxRTM是一种由土壤细菌制成的生物农药,已被广告宣传为对杜鹃花油具有选择性且对环境安全。加拿大卫生部已批准在水力发电设施中使用ZequanoxRTM,这可能表明加拿大正朝着开放水使用的方向发展,就像美国和爱尔兰的情况一样。单物种分析的数据表明,暴露于ZequanoxRTM浓度接近或低于开放水域建议的浓度会导致鱼类和无脊椎动物的死亡(通常≥50%)。但是,由于在自然环境和实验室环境中毒物的行为可能不同,并且由于单物种测试无法表征间接影响(如农药介导的变化),因此在露天环境中使用ZequanoxRTM的非目标影响知之甚少通过竞争为期六周的复制性水生介体实验,我模拟了ZequanoxRTM(100 mg / L的活性成分)在开阔水域的应用,以确定主要生产者浮游动物的反应和大型无脊椎动物在复杂的水生环境中暴露于ZequanoxRTM。浮游植物和浮游生物的生物量(占对照的250--350%),大型枝角类掠食性动物的丰富度(占对照的700%)和昆虫出苗(占对照的490%)出现短期增加。最初在小型锁骨浮游动物中出现了较大的下降(球形胸藻,蓝眼石and和粘膜Scapheloberis mucronata下降了88--94%),但丰度通常在三周内反弹。在两栖动物中,两栖动物Hyalella azteca(平均含量比对照少77%)和腹足动物Viviparus georgianus(存活率73 +/- 16%)也下降,在实验过程中它们没有恢复。对水质量的短期影响包括尽管中膜曝气,但溶解氧减少(最低1.2 mg / L);该研究可帮助监管机构和管理人员评估在开放水域系统中使用ZequanoxRTM的生态风险并提供支持在知情的情况下做出有关杜鹃花控制的决策,包括确定的侵染,对新入侵的快速反应,以及根据《物种风险法》做出的努力,以保护和恢复受到杜鹃花入侵威胁和破坏的本地贻贝栖息地。

著录项

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Ecology.;Aquatic sciences.
  • 学位 M.S.
  • 年度 2018
  • 页码 178 p.
  • 总页数 178
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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