bioRxiv · 10.1101/2020.04.07.030171
Neonicotinoids disrupt memory, circadian behaviour and sleep
Abstract
Globally, neonicotinoids are still the most used insecticides, despite their well-documented sub-lethal effects on beneficial insects1. Neonicotinoids are agonists at the nicotinic acetylcholine receptors, the main mediator of synaptic transmission in the insect brain2-5, making them highly potent neurotoxins and insecticides6,7. Memory, circadian rhythmicity and sleep are essential for efficient foraging in many pollinating insects, and involve nicotinic acetylcholine receptor signalling2,4,8-10. The effect of field-relevant concentrations of European Union-banned neonicotinoids: imidacloprid, clothianidin and thiamethoxam, as well as the currently unbanned thiacloprid were tested on Drosophila memory, circadian rhythms and sleep. Field-relevant concentrations of imidacloprid, clothianidin and thiamethoxam disrupted learning, behavioural rhythmicity and sleep whilst thiacloprid exposure only affected sleep. Exposure to imidacloprid and clothianidin directly affected neurophysiology, preventing the day/night remodelling and accumulation of pigment dispersing factor neuropeptide in the dorsal terminals of clock neurons. Knockdown of the neonicotinoid susceptible D1 and D{beta}2 nicotinic acetylcholine receptor subunits in the mushroom bodies or clock neurons recapitulated the neonicotinoid like deficits in memory or circadian/sleep behaviour demonstrating that neonicotinoid effects are likely mediated in the mushroom body and clock circuitry. Disruption to learning, circadian rhythmicity and sleep are likely to have far-reaching detrimental effects on beneficial insects in the field.
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Tasman, K., Hidalgo, S., Buhl, E., Rands, S. A., Hodge, J. J. L.. 2020-04-08. Neonicotinoids disrupt memory, circadian behaviour and sleep. https://doi.org/10.1101/2020.04.07.030171
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