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The Impact of Pesticides on Flower‐Visiting Insects: A Review with Regard to European Risk Assessment

机译:农药对访花昆虫的影响:关于欧洲风险评估的回顾

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Flower-visiting insects (FVIs) are an ecologically diverse group of mobile, flying species that should be protected from pesticide effects according to European policy. However, there is an ongoing decline of FVI species, partly caused by agricultural pesticide applications. Therefore, the risk assessment framework needs to be improved. We synthesized the peer-reviewed literature on FVI groups and their ecology, habitat, exposure to pesticides, and subsequent effects. The results show that FVIs are far more diverse than previously thought. Their habitat, the entire agricultural landscape, is potentially contaminated with pesticides through multiple pathways. Pesticide exposure of FVIs at environmentally realistic levels can cause population-relevant adverse effects. This knowledge was used to critically evaluate the European regulatory framework of exposure and effect assessment. The current risk assessment should be amended to incorporate specific ecological properties of FVIs, that is, traits. We present data-driven tools to improve future risk assessments by making use of trait information. There are major knowledge gaps concerning the general investigation of groups other than bees, the collection of comprehensive data on FVI groups and their ecology, linking habitat to FVI exposure, and study of previously neglected complex population effects. This is necessary to improve our understanding of FVIs and facilitate the development of a more protective FVI risk assessment. Environ Toxicol Chem 2019;38:2355-2370. (c) 2019 The Authors. Environmental Toxicology and Chemistry published by Wiley Periodicals, Inc. on behalf of SETAC
机译:访花昆虫(FVI)是一种生态多样的移动性飞行物种,应根据欧洲政策保护其免受杀虫剂的影响。但是,FVI物种的数量正在持续减少,部分原因是农业农药的使用。因此,风险评估框架需要改进。我们综合了有关FVI族群及其生态,生境,农药暴露及后续影响的同行评审文献。结果表明,FVI比以前认为的要多样化得多。他们的栖息地,整个农业景观,都可能通过多种途径被农药污染。 FVI在环境中的实际水平下的农药暴露可能引起与人口有关的不利影响。这些知识被用来严格评估暴露和效果评估的欧洲监管框架。应修订当前的风险评估,以纳入FVI的特定生态特性,即特性。我们提出了数据驱动的工具,以通过利用特征信息来改进未来的风险评估。关于蜜蜂以外的群体的一般调查,有关FVI群体及其生态的综合数据的收集,将栖息地与FVI的暴露联系起来以及研究先前被忽略的复杂种群影响等方面,存在重大知识空白。这对于增进我们对FVI的理解并促进开发更具保护性的FVI风险评估是必要的。 Environ Toxicol Chem 2019; 38:2355-2370。 (c)2019作者。 Wiley Periodicals,Inc.代表SETAC出版的《环境毒理学和化学》

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