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首页> 外文期刊>The Science of the Total Environment >Nutrients and sediment modify the impacts of a neonicotinoid insecticide on freshwater community structure and ecosystem functioning
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Nutrients and sediment modify the impacts of a neonicotinoid insecticide on freshwater community structure and ecosystem functioning

机译:营养物质和沉积物改变了新烟碱类杀虫剂对淡水群落结构和生态系统功能的影响

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摘要

Pesticides are important contributors to the global freshwater biodiversity crisis. Among pesticides, neonicotinoids are the best-selling class of agricultural insecticides and are suspected to represent significant risks to freshwater and terrestrial ecosystems worldwide. Despite growing recognition that neonicotinoid impacts may be modified by the presence of additional stressors, there is limited information about their interactions with other agricultural stressors in freshwater ecosystems. We conducted an outdoor pond-mesocosm experiment to investigate the individual and interactive effects of nutrients, fine sediment, and imidacloprid (a neonicotinoid insecticide) inputs on freshwater community structure (density, diversity, and composition of zooplankton and benthic invertebrates) and ecosystem functioning (ecosystem metabolism, primary production, and organic matter decomposition). We hypothesized antagonistic nutrient-imidacloprid, and synergistic sediment-imidacloprid interactions, affecting aquatic invertebrate communities. The three stressors had significant individual and interactive effects on pond ecosystems. The insecticide neutralized the positive effects of nutrient additions on benthic invertebrate richness and mitigated the negative effects of sediment on zooplankton communities (antagonistic interactions). Moreover, we observed compensatory responses of tolerant benthic invertebrates, which resulted in reversal interactions between sediment and imidacloprid. Furthermore, our observations suggest that imidacloprid has the potential to increase net ecosystem production at environmentally relevant concentrations. Our findings support the hypothesis that the impacts of imidacloprid may be modified by other agricultural stressors. This has important implications on a global scale, given the widespread use of these pesticides in intensive agricultural landscapes and the growing body of literature suggesting that traditional pesticide assessment frameworks, based on laboratory toxicity tests alone, may be insufficient to adequately predict effects to complex freshwater ecosystems. (C) 2019 Elsevier B.V. All rights reserved.
机译:农药是造成全球淡水生物多样性危机的重要因素。在农药中,新烟碱类是农业杀虫剂中最畅销的一类,据怀疑对全世界的淡水和陆地生态系统构成重大风险。尽管越来越多的人意识到新烟碱的影响可能会因存在其他压力源而改变,但是关于它们与淡水生态系统中其他农业压力源之间相互作用的信息有限。我们进行了一个室外池塘环境试验,以研究养分,细沉积物和吡虫啉(一种新烟碱类杀虫剂)投入对淡水群落结构(浮游动物和底栖无脊椎动物的密度,多样性和组成)和生态系统功能的个体和相互作用的影响(生态系统的新陈代谢,初级生产和有机物分解)。我们假设拮抗营养物吡虫啉和协同沉积物-吡虫啉相互作用,影响水生无脊椎动物群落。这三个压力源对池塘生态系统具有显着的个体和互动影响。该杀虫剂消除了营养添加物对底栖无脊椎动物丰富性的积极影响,并减轻了沉积物对浮游动物群落的负面影响(拮抗作用)。此外,我们观察到耐受性底栖无脊椎动物的代偿反应,这导致沉积物和吡虫啉之间的逆向相互作用。此外,我们的观察结果表明,吡虫啉具有在环境相关浓度下增加生态系统净产量的潜力。我们的发现支持以下假说:吡虫啉的影响可能会被其他农业胁迫因素改变。鉴于这些农药在集约化农业景观中的广泛使用以及越来越多的文献表明,仅基于实验室毒性测试的传统农药评估框架可能不足以充分预测对复杂淡水的影响,这在全球范围内具有重要意义生态系统。 (C)2019 Elsevier B.V.保留所有权利。

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