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Changes in the Magnitude of the Individual and Combined Effects of Contaminants, Warming, and Predators on Tropical Cladocerans across 11 Generations

机译:污染物,热化和捕食者在11代热带克拉伯类上的个体和综合影响的变化

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摘要

A massive challenge in ecotoxicology is assessing how the interaction of contaminants, climate change, and biotic stressors shapes the structure and functions of natural populations. Furthermore, it is not known whether contemporary evolutionary responses to multiple stressors across multigenerations may alter the interaction of these stressors. To address these issues, we exposed Moina dubia to lead (Pb, 50 μg/L) under two temperatures (25 and 28 °C) with/without predator cues from climbing perch (Anabas testudineus) for 11 generations (F1-F11). We assessed changes in M. dubia fitness, including development time, adult size, lifespan, fecundity, and neonate production. We found strong negative effects of Pb, elevated temperature, and predator cues on the fitness of M. dubia. Strikingly, Pb-induced reduction in the performance of M. dubia was stronger at 25 °C and in the absence of predator cues. The individual and interactive effects of Pb, temperature, and predator cues on M. dubia were stronger across F1-F9 and generally leveled off in F10-F11. Our results highlight the high vulnerability of M. dubia to multiple stressors, thus weakening top-down control on algal blooms in eutrophic lakes. Our study underscores the importance of integrating evolutionary responses in realistic ecotoxicological risk assessments of contaminants interacting with climatic and biotic stressors.
机译:生态毒理学的巨大挑战正在评估污染物,气候变化和生物输应力的相互作用如何构成自然群体的结构和功能。此外,尚不清楚对多体跨组织的多重压力源的当代进化响应是否可以改变这些压力源的相互作用。为了解决这些问题,我们将Moina Dubia暴露于两个温度(25和28°C)下的铅(Pb,50μg/ L),其中包含来自攀爬鲈鱼(Anabas Testudineus)的捕食者提示,用于11代(F1-F11)。我们评估了M. Dubia Fitness的变化,包括开发时间,成人大小,寿命,繁殖力和新生儿生产。我们发现Pb,升高的温度和捕食者提示对M. Dubia的适应性的强烈负面影响。尖锐的,PB诱导的M. Dubia的性能降低在25℃并在没有捕食者提示的情况下更强。在F1-F9上的Pb,温度和捕食者提示的个人和互动效果在F1-F9上较强,并且通常在F10-F11中升温。我们的结果突出了M. Dubia对多种压力源的高脆弱性,从而削弱了富营养湖中的藻类盛开的自上而下。我们的研究强调了整合进化反应在与气候和生物输应力互动的污染物的现实生态毒理学风险评估中的重要性。

著录项

  • 来源
    《Environmental Science & Technology》 |2020年第23期|15287-15295|共9页
  • 作者单位

    Department of Environmental Engineering Thuyloi University Hanoi 116705 Vietnam;

    Cam Rank Centre for Tropical Marine Research and Aquaculture Institute of Aquaculture Nha Trang University Nha Trang 650000 Vietnam School of Biological Sciences Washington State University Pullman Washington 99164 United States;

    Department of Environmental Engineering Thuyloi University Hanoi 116705 Vietnam;

    Department of Environmental Engineering Thuyloi University Hanoi 116705 Vietnam;

  • 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

  • 入库时间 2022-08-18 22:37:04

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