Amer Nermeen R, Lawler Sharon P, Zohdy Nawal M, Younes Aly, ElSayed Wael M, Wos Guillaume, Abdelrazek Samah, Omer Hind, Connon Richard E
Entomology Department, Faculty of Science, Cairo University, Giza 12613, Egypt.
Institute of Nature Conservation, Polish Academy of Sciences, 31-120 Krakow, Poland.
Insects. 2022 Dec 14;13(12):1151. doi: 10.3390/insects13121151.
Copper is an essential metal that occurs chronically in the environment and affects the development and physiology of aquatic insects. In excess amounts, it can impair their nervous system and behaviour. We tested the anti-predatory behaviour of larvae after seven days exposure with several concentrations of copper up to 500 mg L. We measured responses to non- consumptive (predation cues) and consumptive predation (dragonfly larvae) across two generations. We also tested the accumulated effect of copper on AChE enzyme activity. We exposed half of treated and control larvae to predation cues (water with predator odour and crushed conspecifics) and the other half to water without predation cues. We evaluated total distance moved and velocity. Copper reduced the distance moved and velocity, with stronger effects in the second generation. Copper had no significant effect on larvae eaten by dragonflies. Copper inhibited the AChE enzyme across both generations at 500 µg L. Copper can affect the nervous system directly by inhibiting AChE activity, and possibly also by impairing the olfaction sensors of the larvae, resulting in larval inability to detect predation cues.
铜是一种在环境中长期存在的必需金属,会影响水生昆虫的发育和生理机能。过量的铜会损害它们的神经系统和行为。我们用高达500毫克/升的几种铜浓度对幼虫进行了七天暴露处理后,测试了其反捕食行为。我们在两代中测量了对非消耗性(捕食线索)和消耗性捕食(蜻蜓幼虫)的反应。我们还测试了铜对乙酰胆碱酯酶(AChE)活性的累积影响。我们将一半经处理的幼虫和对照幼虫暴露于捕食线索(带有捕食者气味和碾碎的同种个体的水)中,另一半暴露于没有捕食线索的水中。我们评估了移动的总距离和速度。铜减少了移动距离和速度,在第二代中的影响更强。铜对被蜻蜓吃掉的幼虫没有显著影响。在500微克/升时,铜在两代中均抑制了AChE酶。铜可能通过抑制AChE活性直接影响神经系统,也可能通过损害幼虫的嗅觉传感器,导致幼虫无法检测到捕食线索。