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新烟碱类杀虫剂噻虫啉会损害熊蜂(Bombus terrestris)的学习能力、运动活性水平和蔗糖溶液消耗量。

The Neonicotinoid Imidacloprid Impairs Learning, Locomotor Activity Levels, and Sucrose Solution Consumption in Bumblebees (Bombus terrestris).

机构信息

Department of Biosciences, Centre for Ecological and Evolutionary Synthesis, University of Oslo, Oslo, Norway.

Department of Biosciences, Section for Aquatic Biology and Toxicology, University of Oslo, Oslo, Norway.

出版信息

Environ Toxicol Chem. 2023 Jun;42(6):1337-1345. doi: 10.1002/etc.5611. Epub 2023 Apr 25.

Abstract

Bumblebees carry out the complex task of foraging to provide for their colonies. They also conduct pollination, an ecosystem service of high importance to both wild plants and entomophilous crops. Insecticides can alter different aspects of bumblebee foraging behavior, including the motivation to leave the hive, finding the right flowers, handling flowers, and the ability to return to the colony. In the present study, we assessed how the neonicotinoid imidacloprid affects bumblebees' foraging behavior after exposure to four different treatment levels, including field-realistic concentrations (0 [control], 1, 10, and 100 μg/L), through sucrose solution over 9 days. We observed the behavior of several free-flying bumblebees simultaneously foraging on artificial flowers in a flight arena to register the bees' complex behavior postexposure. To conduct a detailed assessment of how insecticides affect bumblebee locomotor behavior, we used video cameras and analyzed the recordings using computer vision. We found that imidacloprid impaired learning and locomotor activity level when the bumblebees foraged on artificial flowers. We also found that imidacloprid exposure reduced sucrose solution intake and storage. By using automated analyses of video recordings of bumblebee behavior, we identified sublethal effects of imidacloprid exposure at field-realistic doses. Specifically, we observed negative impacts on consumption of sucrose solution as well as on learning and locomotor activity level. Our results highlight the need for more multimodal approaches when assessing the sublethal effects of insecticides and plant protection products in general. Environ Toxicol Chem 2023;42:1337-1345. © 2023 SETAC.

摘要

熊蜂承担着为其群体觅食的复杂任务。它们还进行传粉,这是野生植物和虫媒作物都非常重要的生态系统服务。杀虫剂会改变熊蜂觅食行为的不同方面,包括离开蜂巢的动机、找到合适的花朵、处理花朵以及返回蜂巢的能力。在本研究中,我们评估了新烟碱类杀虫剂吡虫啉在暴露于四种不同处理水平(包括 0[对照]、1、10 和 100μg/L 的田间实际浓度)后,通过 9 天的蔗糖溶液对熊蜂觅食行为的影响。我们同时观察了几只自由飞行的熊蜂在飞行竞技场中觅食人工花朵的行为,以记录蜜蜂暴露后的复杂行为。为了详细评估杀虫剂如何影响熊蜂的运动行为,我们使用摄像机拍摄视频,并使用计算机视觉分析记录。我们发现,吡虫啉会损害熊蜂在觅食人工花朵时的学习和运动活动水平。我们还发现,吡虫啉暴露会减少蔗糖溶液的摄入和储存。通过对熊蜂行为的视频记录进行自动分析,我们确定了在田间实际剂量下吡虫啉暴露的亚致死效应。具体而言,我们观察到了对蔗糖溶液消耗以及学习和运动活动水平的负面影响。我们的研究结果强调了在评估杀虫剂和植物保护产品的亚致死效应时,需要采用更多的多模态方法。

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