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氟虫腈污染食物会改变与觅食行为相关的基因表达,而觅食行为是非洲化蜜蜂的一个重要行为。

Food contamination with fipronil alters gene expression associated with foraging in Africanized honey bees.

机构信息

Center of Education, Science and Technology in Rational Beekeeping (NECTAR), College of Veterinary Medicine and Animal Sciences, São Paulo State University, Botucatu, São Paulo, Brazil.

Institute of Biotechnology, São Paulo State University, Botucatu, São Paulo, Brazil.

出版信息

Environ Sci Pollut Res Int. 2024 Aug;31(39):52267-52278. doi: 10.1007/s11356-024-34695-8. Epub 2024 Aug 15.

DOI:10.1007/s11356-024-34695-8
PMID:39145909
Abstract

Taking into consideration that bees can be contaminated by pesticides through the ingestion of contaminated floral resources, we can utilize genetic techniques to assess effects that are scarcely observed in behavioral studies. This study aimed to investigate the genetic effects of ingesting lethal and sublethal doses of the insecticide fipronil in foraging honey bees during two periods of acute exposure. Bees were exposed to fipronil through contaminated honey syrup at two dosages (LD = 0.19 µg/bee; LD = 0.0019 µg/bee) and for two durations (1 and 4 h). Following exposure, we measured syrup consumption per bee, analyzed the transcriptome of bee brain tissue, and identified differentially expressed genes (DEGs), categorizing them functionally based on gene ontology (GO). The results revealed a significant genetic response in honey bees after exposure to fipronil, regardless of the dosage used. Fipronil affected various metabolic, transport, and cellular regulation pathways, as well as detoxification processes and xenobiotic substance detection. Additionally, the downregulation of several DEGs belonging to the olfactory-binding protein (OBP) family was observed, suggesting potential physiological alterations in bees that may lead to disoriented behaviors and reduced foraging efficiency.

摘要

考虑到蜜蜂可能通过摄入受污染的花卉资源而受到农药的污染,我们可以利用遗传技术来评估在行为研究中很少观察到的影响。本研究旨在调查在两个急性暴露期内觅食的蜜蜂摄入致死和亚致死剂量的杀虫剂氟虫腈的遗传效应。蜜蜂通过受污染的花蜜糖浆以两种剂量(LD=0.19µg/只;LD=0.0019µg/只)和两种时间(1 和 4 小时)接触氟虫腈。暴露后,我们测量了每只蜜蜂的糖浆消耗,分析了蜜蜂脑组织的转录组,并鉴定了差异表达基因(DEGs),根据基因本体论(GO)对它们进行功能分类。结果表明,无论使用何种剂量,蜜蜂在接触氟虫腈后都会产生明显的遗传反应。氟虫腈影响各种代谢、运输和细胞调节途径,以及解毒过程和外源物质检测。此外,还观察到属于嗅觉结合蛋白(OBP)家族的几个 DEG 的下调,表明蜜蜂可能发生潜在的生理变化,导致行为迷失和觅食效率降低。

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