Gutiérrez Yeisson, Tomé Hudson V V, Guedes Raul N C, Oliveira Eugênio E
Department of Entomology, Federal University of Viçosa, Viçosa, Brazil.
Environ Toxicol Chem. 2017 May;36(5):1235-1242. doi: 10.1002/etc.3645. Epub 2016 Nov 11.
Backswimmers (Hemiptera: Heteroptera: Notonectidae) are insect predators in a wide variety of freshwater habitats. These insects are well known through their role as mosquito biocontrol agents, their ability to prey on immature fishes and frogs, and because they are often the first to colonize aquatic habitats. As a consequence, these predators may face intended or unintended insecticide exposures that may lead to death or to impairment of essential behaviors (e.g., swimming and position in the water column). The toxicity of deltamethrin (a type II pyrethroid insecticide stressor) and the swimming activity of the backswimmers Buenoa tarsalis and Martarega bentoi were evaluated. Concentration-mortality and survival bioassays were conducted with the insecticide, which were compared with controls without deltamethrin. Deltamethrin was 26-fold more toxic to B. tarsalis (median lethal concentration [LC50] = 4.0 ng a.i./L) than to M. bentoi (LC50 = 102.5 ng a.i./L). The pattern of occupation of B. tarsalis, but not of M. bentoi, in the water column was also disrupted, and B. tarsalis was forced to stay near the water surface longer with exposure to deltamethrin. Thus, based on the findings, B. tarsalis was less resilient to deltamethrin exposure compared with M. bentoi, and the efficacy of swimming-dependent processes might be negatively affected (e.g., prey catching, partner encounter, and antipredator behaviors) for B. tarsalis under deltamethrin exposure. Environ Toxicol Chem 2017;36:1235-1242. © 2016 SETAC.
仰泳蝽(半翅目:异翅亚目:仰泳蝽科)是广泛存在于各种淡水生境中的捕食性昆虫。这些昆虫因其作为蚊子生物防治剂的作用、捕食幼鱼和青蛙的能力以及它们常常是最早在水生栖息地定殖的物种而广为人知。因此,这些捕食者可能会面临有意或无意的杀虫剂暴露,这可能导致死亡或损害基本行为(如游泳和在水柱中的位置)。评估了溴氰菊酯(一种II型拟除虫菊酯类杀虫剂应激源)的毒性以及仰泳蝽Buenoa tarsalis和Martarega bentoi的游泳活动。使用该杀虫剂进行了浓度-死亡率和存活生物测定,并与不含溴氰菊酯的对照组进行了比较。溴氰菊酯对B. tarsalis的毒性(半数致死浓度[LC50]=4.0纳克有效成分/升)比对M. bentoi的毒性(LC50=102.5纳克有效成分/升)高26倍。B. tarsalis在水柱中的占据模式受到干扰,而M. bentoi则没有,并且接触溴氰菊酯后,B. tarsalis被迫在水面附近停留更长时间。因此,根据研究结果,与M. bentoi相比,B. tarsalis对溴氰菊酯暴露的恢复力较低,并且在溴氰菊酯暴露下,B. tarsalis依赖游泳的行为过程(如捕食、寻找配偶和反捕食行为)的效能可能会受到负面影响。《环境毒理学与化学》2017年;36:1235 - 1242。©2016 SETAC。