Indian River Research and Education Center, Department of Entomology, University of Florida, Fort Pierce, Florida 34945, USA.
J Toxicol Environ Health A. 2013;76(12):716-22. doi: 10.1080/15287394.2013.802266.
Fipronil, a relatively new insecticide more recently developed than organophosphates and pyrethroids, has been detected in surface water draining from agricultural and urban-developed areas. This insecticide is primarily lost through subsurface and surface drainage from terrestrial areas where it has been applied. Invasive aquatic plants often need to be managed in these receiving water bodies to prevent loss of recreational and functional values (e.g., drainage), especially in subtropical and tropical areas. One insect of particular interest is the chironomid midge Cricotopus lebetis Sublette, which may be a useful augmentative biocontrol agent for the invasive aquatic weed Hydrilla verticillata L.f. Royale. Exposure of aquatic organisms, especially insects, to fipronil may significantly impact nontarget populations. These studies investigated the sensitivity of C. lebetis to fipronil exposures ranging from 24 to 96 h. The LC50 observed for each exposure interval was 7.26 μg/L (24 h), 2.61 μg/L (48 h), 1.78 μg/L (72 h), and 1.06 μg/L (96 h). The LC90 values observed were 47.18 μg/L (24 h), 9.55 μg/L (48 h), 6.45 μg/L (72 h), and 4.81 μg/L (96 h). Behavioral changes were seen at all fipronil concentration levels, where larvae exited the plant and exhibited abnormal behavior, such as restricted movement and lack of feeding. Results indicate that acute lethality occurred at environmentally relevant concentrations of fipronil.
氟虫腈是一种相对较新的杀虫剂,比有机磷和拟除虫菊酯类杀虫剂开发得晚,已在从农业和城市发展地区排水的地表水检测到。这种杀虫剂主要通过其应用的陆地的地下和地表排水而流失。在这些受纳水体中,通常需要管理入侵性水生植物,以防止丧失娱乐和功能价值(例如排水),尤其是在亚热带和热带地区。特别引人关注的一种昆虫是摇蚊幼虫 Cricotopus lebetis Sublette,它可能是入侵性水生杂草水葫芦 Hydrilla verticillata L.f. Royale 的有用的增强型生物防治剂。水生生物,特别是昆虫,接触氟虫腈可能会对非目标种群产生重大影响。这些研究调查了 C. lebetis 对氟虫腈暴露的敏感性,暴露时间从 24 小时到 96 小时不等。每个暴露间隔的 LC50 观察值为 7.26μg/L(24 小时)、2.61μg/L(48 小时)、1.78μg/L(72 小时)和 1.06μg/L(96 小时)。观察到的 LC90 值分别为 47.18μg/L(24 小时)、9.55μg/L(48 小时)、6.45μg/L(72 小时)和 4.81μg/L(96 小时)。在所有氟虫腈浓度水平下都观察到行为变化,幼虫离开植物并表现出异常行为,例如运动受限和缺乏进食。结果表明,在环境相关浓度的氟虫腈下会发生急性致死。