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Exposure to a nicotinoid pesticide reduces defensive behaviors in a non-target organism the rusty crayfish Orconectes rusticus

机译:暴露于烟碱类农药可降低非目标生物生锈的小龙虾Orconectes Rustus的防御行为

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摘要

Imidacloprid is the most widely used of the nicotinoid insecticides, the fastest growing class of pesticides on the global market. Although less toxic to mammals and birds compared to organophosphates, nicotinoids have the potential to impact non-target invertebrates, especially through sublehal effects on behavior, physiology, reproduction, and development. We investigated the impact of sublethal doses of imidacloprid on the defensive responses of rusty crayfish Orconectes rusticus exposed to 0, 1, 10, and 100 µg•L−1 of imidacloprid for 10 days (n = 7 crayfish per treatment). Defensive behaviors were examined with the rod test, in which a glass rod was jabbed into the crayfish’s container at a 90 degree angle from the bottom and about 0.5 cm directly in front of the crayfish. Crayfish responded to the rod aggressively with claw raising and pinching, neutrally (no response), or by backing or tail-flipping away. The frequency of neutral responses more than doubled after four days in the high (100 µg•L−1) group and after eight days in the low (1 µg•L−1) exposure group. Furthermore, most crayfish in the 100 µg•L−1 treatment were not able to right themselves within 30 s when placed on their backs. Several studies have reported concentrations of imidacloprid contamination in freshwater ecosystems that exceed this study’s lowest exposure scenario, 1 µg•L−1. We therefore conclude that imidacloprid contamination reduces the defensive behaviors of crayfish, impairing their ability to survive in habitats where they play important ecological roles.
机译:吡虫啉是使用最广泛的烟碱类杀虫剂,是全球市场上增长最快的一类农药。尽管与有机磷酸酯相比,对哺乳动物和鸟类的毒性较小,但烟碱类化合物可能会影响非目标无脊椎动物,特别是通过对行为,生理,繁殖和发育的亚致死影响。我们调查了亚致命剂量的吡虫啉对生锈小龙虾在0、1、10和100μg•L -1 暴露于吡虫啉10天(n = 7小龙虾)的防御反应的影响每次治疗)。防御行为通过鱼竿测试进行了检验,其中将玻璃棒从小龙虾的底部以90度角刺入小龙虾的容器,并在小龙虾的正前方大约0.5厘米处刺入小龙虾的容器。小龙虾通过举爪和捏捏,中立(无响应)或后仰或甩尾的方式对鱼竿做出积极反应。高(100 µg•L -1 )组中的四天和低(1 µg•L -1 )中的八天后,中性反应的频率增加了一倍以上。 >)曝光组。此外,大多数接受100μg•L −1 处理的小龙虾,当放在自己的背上时,都无法在30s内纠正自己。几项研究报告说,淡水生态系统中吡虫啉的污染浓度超过了本研究的最低暴露水平1µg•L -1 。因此,我们得出结论,吡虫啉污染会降低小龙虾的防御行为,从而削弱其在重要生态环境中的生存能力。

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