Utrecht University, Utrecht, The Netherlands.
School of Life Sciences, University of Sussex, Brighton, BN1 9QG, UK.
Environ Sci Pollut Res Int. 2021 Mar;28(10):11749-11797. doi: 10.1007/s11356-017-0341-3. Epub 2017 Nov 9.
New information on the lethal and sublethal effects of neonicotinoids and fipronil on organisms is presented in this review, complementing the previous Worldwide Integrated Assessment (WIA) in 2015. The high toxicity of these systemic insecticides to invertebrates has been confirmed and expanded to include more species and compounds. Most of the recent research has focused on bees and the sublethal and ecological impacts these insecticides have on pollinators. Toxic effects on other invertebrate taxa also covered predatory and parasitoid natural enemies and aquatic arthropods. Little new information has been gathered on soil organisms. The impact on marine and coastal ecosystems is still largely uncharted. The chronic lethality of neonicotinoids to insects and crustaceans, and the strengthened evidence that these chemicals also impair the immune system and reproduction, highlights the dangers of this particular insecticidal class (neonicotinoids and fipronil), with the potential to greatly decrease populations of arthropods in both terrestrial and aquatic environments. Sublethal effects on fish, reptiles, frogs, birds, and mammals are also reported, showing a better understanding of the mechanisms of toxicity of these insecticides in vertebrates and their deleterious impacts on growth, reproduction, and neurobehaviour of most of the species tested. This review concludes with a summary of impacts on the ecosystem services and functioning, particularly on pollination, soil biota, and aquatic invertebrate communities, thus reinforcing the previous WIA conclusions (van der Sluijs et al. 2015).
本综述提供了新的信息,阐述了新烟碱类和氟虫腈对生物的致死和亚致死影响,补充了 2015 年全球综合评估(WIA)的内容。这些系统杀虫剂对无脊椎动物具有很高的毒性,这一点已经得到证实,并扩展到包括更多的物种和化合物。最近的大部分研究都集中在蜜蜂上,以及这些杀虫剂对传粉媒介的亚致死和生态影响。这些杀虫剂对其他无脊椎动物类群的毒性影响也涉及捕食性和寄生性天敌以及水生节肢动物。关于土壤生物的新信息很少。对海洋和沿海生态系统的影响仍在很大程度上尚未可知。新烟碱类和氟虫腈对昆虫和甲壳类动物的慢性致死性,以及这些化学物质还会损害免疫系统和生殖能力的有力证据,突出了这一类特别的杀虫剂(新烟碱类和氟虫腈)的危险,有可能大大减少陆地和水生环境中节肢动物的数量。对鱼类、爬行动物、青蛙、鸟类和哺乳动物的亚致死影响也有报道,这表明对这些杀虫剂在脊椎动物中的毒性机制及其对大多数测试物种的生长、繁殖和神经行为的有害影响有了更好的理解。本综述最后总结了对生态系统服务和功能的影响,特别是对传粉、土壤生物区系和水生无脊椎动物群落的影响,从而强化了之前 WIA 的结论(van der Sluijs 等人,2015 年)。