Department of Biology, University of Saskatchewan, Saskatoon, SK, Canada.
Sci Rep. 2017 Apr 20;7(1):936. doi: 10.1038/s41598-017-01039-1.
Neonicotinoids are known to affect insect navigation and vision, however the mechanisms of these effects are not fully understood. A visual motion sensitive neuron in the locust, the Descending Contralateral Movement Detector (DCMD), integrates visual information and is involved in eliciting escape behaviours. The DCMD receives coded input from the compound eyes and monosynaptically excites motorneurons involved in flight and jumping. We show that imidacloprid (IMD) impairs neural responses to visual stimuli at sublethal concentrations, and these effects are sustained two and twenty-four hours after treatment. Most significantly, IMD disrupted bursting, a coding property important for motion detection. Specifically, IMD reduced the DCMD peak firing rate within bursts at ecologically relevant doses of 10 ng/g (ng IMD per g locust body weight). Effects on DCMD firing translate to deficits in collision avoidance behaviours: exposure to 10 ng/g IMD attenuates escape manoeuvers while 100 ng/g IMD prevents the ability to fly and walk. We show that, at ecologically-relevant doses, IMD causes significant and lasting impairment of an important pathway involved with visual sensory coding and escape behaviours. These results show, for the first time, that a neonicotinoid pesticide directly impairs an important, taxonomically conserved, motion-sensitive visual network.
新烟碱类杀虫剂已知会影响昆虫的导航和视觉,但这些影响的机制尚未完全了解。蝗虫中的一种视觉运动敏感神经元——下行对侧运动探测器(DCMD)整合视觉信息,并参与引发逃避行为。DCMD 从复眼接收编码输入,并单突触兴奋参与飞行和跳跃的运动神经元。我们表明,吡虫啉(IMD)在亚致死浓度下损害对视觉刺激的神经反应,并且这些影响在处理后两小时和二十四小时持续存在。最重要的是,IMD 破坏了爆发,这是一种对运动检测很重要的编码特性。具体来说,IMD 在生态相关剂量 10ng/g(每克蝗虫体重的 IMD 纳米)下降低了爆发中的 DCMD 峰值放电率。对 DCMD 放电的影响转化为逃避行为的缺陷:暴露于 10ng/g IMD 会减弱逃避动作,而 100ng/g IMD 则阻止飞行和行走的能力。我们表明,在生态相关剂量下,IMD 会导致与视觉感觉编码和逃避行为相关的重要途径出现显著且持久的损伤。这些结果首次表明,一种新烟碱类农药会直接损害一种重要的、分类上保守的、运动敏感的视觉网络。