Flupyradifurone, imidacloprid and clothianidin disrupt the auditory processing in the locust CNS.

IF 1.9 4区 心理学 Q3 BEHAVIORAL SCIENCES
Marcelo Christian, Michelle Kraft, Paul Wilknitz, Manuela Nowotny, Stefan Schöneich
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引用次数: 0

Abstract

Since the EU banned classic neonicotinoids like imidacloprid and clothianidin, they may be replaced by more recently marketed insecticides such as flupyradifurone. However, they all operate on the same neuropharmacological principle as selective agonists at the insect's nicotinic acetylcholine receptors. Here we investigated the impact of flupyradifurone, imidacloprid and clothianidin on the neuronal processing in the auditory pathway of the desert locust Schistocerca gregaria. While stepwise increasing the insecticide concentration in the haemolymph, we extracellularly recorded the spike responses of auditory afferents in the tympanal nerve and of auditory interneurons in the neck connectives. All three insecticides showed a very similar dose-dependent suppression of spike responses in the auditory interneurons ascending towards the brain, whereas the spike responses in the sensory neurons of the ears appeared unaffected. Furthermore, by systematic injection experiments we demonstrate that insecticide dosages which already supress the information transfer in the auditory pathway are by far too low to induce the typical poisoning symptoms like trembling, spasms, and paralysis. We discuss how sublethal intoxication with classical neonicotinoids or functionally related insecticides like flupyradifurone may disrupt the postsynaptic balance between excitation and inhibition in the auditory pathway of locusts and other orthopteran insects.

氟吡地黄酮、吡虫啉和噻虫胺破坏了蝗虫中枢神经系统的听觉处理。
由于欧盟禁止使用经典的新烟碱类杀虫剂,如吡虫啉和噻虫胺,它们可能会被最近上市的杀虫剂如氟吡呋酮所取代。然而,它们都在相同的神经药理学原理下工作,就像昆虫的烟碱乙酰胆碱受体的选择性激动剂一样。研究了氟吡地黄酮、吡虫啉和噻虫胺对荒漠蝗听觉通路神经元加工的影响。在逐步增加血淋巴中杀虫剂浓度的同时,我们在细胞外记录了鼓室神经听觉传入和颈部连接神经听觉中间神经元的尖峰反应。这三种杀虫剂对向大脑上升的听觉中间神经元的刺突反应表现出非常相似的剂量依赖性抑制,而耳朵感觉神经元的刺突反应似乎未受影响。此外,通过系统的注射实验,我们证明了已经抑制听觉通路信息传递的杀虫剂剂量太低,不足以引起典型的中毒症状,如颤抖、痉挛和瘫痪。我们讨论了亚致死中毒与经典的新烟碱类或功能相关的杀虫剂如氟吡喃酮可能会破坏蝗虫和其他直翅目昆虫听觉通路中兴奋和抑制之间的突触后平衡。
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来源期刊
CiteScore
4.80
自引率
14.30%
发文量
67
审稿时长
1 months
期刊介绍: The Journal of Comparative Physiology A welcomes original articles, short reviews, and short communications in the following fields: - Neurobiology and neuroethology - Sensory physiology and ecology - Physiological and hormonal basis of behavior - Communication, orientation, and locomotion - Functional imaging and neuroanatomy Contributions should add to our understanding of mechanisms and not be purely descriptive. The level of organization addressed may be organismic, cellular, or molecular. Colour figures are free in print and online.
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