Center of the Study of Social Insects, Department of Biology, Institute of Biosciences of Rio Claro, São Paulo State University (UNESP), Rio Claro, Brazil.
Pest Manag Sci. 2019 Mar;75(3):607-615. doi: 10.1002/ps.5226. Epub 2018 Nov 5.
Toxicological studies evaluating the possible harmful effects of pesticides on bees are important and allow the emergence of protection and pollinator conservation strategies. This study aimed to evaluate the effects of exposure to a sublethal concentration of imidacloprid (LC : 0.014651 ng imidacloprid µL diet) on the distribution of certain proteins identified in the brain of Apis mellifera worker bees using a MALDI-imaging approach. This technique enables proteomic analysis of tissues in situ by monitoring the spatiotemporal dynamics of the biochemical processes occurring at a specific time in specific brain neuropils. For this purpose, foraging bees were exposed to an 8-day diet containing a sublethal concentration of imidacloprid corresponding to the LC . Bees were collected on day 8 of exposure, and their brains analyzed using protein density maps.
The results showed that exposure to imidacloprid led to a series of biochemical changes, including alterations in synapse regulation, apoptosis regulation and oxidative stress, which may adversely impair the physiology of these colony bees.
Worker bee contact with even tiny amounts of imidacloprid had potent effects leading to the overexpression of a series of proteins related to important cellular processes that were possibly damaged by the insecticide. © 2018 Society of Chemical Industry.
评估农药对蜜蜂可能产生的有害影响的毒理学研究非常重要,这可以帮助我们制定保护和传粉者保护策略。本研究旨在使用 MALDI-成像方法评估接触亚致死浓度的吡虫啉(LC:0.014651ng 吡虫啉/µL 饮食)对意大利蜜蜂工蜂大脑中某些蛋白质分布的影响。该技术通过监测特定时间特定脑神经叶中发生的生化过程的时空动态,实现了组织的蛋白质组学原位分析。为此,采集了 8 天接触含有相当于 LC 的亚致死浓度吡虫啉的饮食的觅食蜜蜂,并在接触的第 8 天收集它们的大脑进行蛋白质密度图谱分析。
结果表明,接触吡虫啉会导致一系列生化变化,包括突触调节、细胞凋亡调节和氧化应激的改变,这可能会对这些蜂群蜜蜂的生理机能造成不利影响。
工蜂即使接触极少量的吡虫啉也会产生强烈的影响,导致与重要细胞过程相关的一系列蛋白质过度表达,这些蛋白质可能受到杀虫剂的损害。 © 2018 英国化学学会。