Center for the Environmental Implications of NanoTechnology, Duke University, Durham, North Carolina 27708, United States.
Center for Reservoir and Aquatic Systems Research (CRASR), Baylor University, Waco, Texas 76798, United States.
Environ Sci Technol. 2023 May 30;57(21):8085-8095. doi: 10.1021/acs.est.3c00620. Epub 2023 May 18.
Freshwater ecosystems are exposed to engineered nanoparticles (NPs) through discharge from wastewater and agricultural runoff. We conducted a 9-month mesocosm experiment to examine the combined effects of chronic NP additions on insect emergence and insect-mediated contaminant flux to riparian spiders. Two NPs (copper, gold, plus controls) were crossed by two levels of nutrients in 18 outdoor mesocosms open to natural insect and spider colonization. We collected adult insects and two riparian spider genera, and , for 1 week on a monthly basis. We estimated a significant decrease in cumulative insect emergence of 19% and 24% after exposure to copper and gold NPs, irrespective of nutrient level. NP treatments led to elevated copper and gold tissue concentrations in adult insects, which resulted in terrestrial fluxes of metals. These metal fluxes were associated with increased gold and copper tissue concentrations for both spider genera. We also observed about 25% fewer spiders in the NP mesocosms, likely due to reduced insect emergence and/or NP toxicity. These results demonstrate the transfer of NPs from aquatic to terrestrial ecosystems via emergence of aquatic insects and predation by riparian spiders, as well as significant reductions in insect and spider abundance in response to NP additions.
淡水生态系统通过废水和农业径流排放而接触到工程纳米颗粒 (NPs)。我们进行了为期 9 个月的中观实验,以研究慢性 NP 添加对昆虫出现和昆虫介导的污染物通量对河岸蜘蛛的综合影响。两个 NPs(铜、金,加对照)由两个营养水平交叉,在 18 个露天中观中进行,这些中观对自然昆虫和蜘蛛的定殖开放。我们每月收集一次成虫昆虫和两种河岸蜘蛛属, 和 ,持续一周。我们估计,暴露于铜和金 NPs 后,昆虫的累积出现率分别降低了 19%和 24%,而与营养水平无关。NP 处理导致成虫体内铜和金的组织浓度升高,从而导致金属的陆地通量。这两种金属通量与两个蜘蛛属的金和铜组织浓度升高有关。我们还观察到 NP 中观实验中的蜘蛛减少了约 25%,可能是由于昆虫出现减少和/或 NP 毒性所致。这些结果表明,通过水生昆虫的出现和河岸蜘蛛的捕食,NP 从水生生态系统转移到陆地生态系统,以及昆虫和蜘蛛丰度因 NP 添加而显著减少。