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BIOCHEMICAL RESPONSE OF THE AFRICANIZED HONEYBEE EXPOSED TO FIPRONIL

机译:人造花蜜的花蜜的生物化学反应

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Bees are recognized worldwide for their social, economic, and environmental value. In recent decades they have been seriously threatened by diseases and high levels of pesticide use. The susceptibility of bees to insecticides makes them an important terrestrial model for assessing environmental quality, and various biomarkers have been developed for such assessments. The present study aimed to evaluate the activity of the enzymes acetylcholinesterase (AChE), carboxylesterase (CaE), and glutathione-S-transferase (GST) in Africanized honeybees exposed to fipronil. The results showed that fipronil at a sublethal dose (0.01 ng/bee) modulates the activity of CaE in all isoforms analyzed (CaE-1, CaE-2, and CaE-3) in both newly emerged and aged bees, and does not affect the activity of AChE or GST. The recovery of the bees after fipronil exposure was also investigated, and these results demonstrated that even the cessation of fipronil ingestion might not lead to complete recovery of individual bees. Even at low doses, fipronil was shown to cause changes in the activity of key enzymes in bees. The possible consequences of these changes are discussed. Environ Toxicol Chem (C) 2016 SETAC
机译:蜜蜂因其社会,经济和环境价值而享誉全球。在最近的几十年中,它们受到疾病和大量农药使用的严重威胁。蜜蜂对杀虫剂的敏感性使其成为评估环境质量的重要陆地模型,并且已经开发了各种生物标记物用于此类评估。本研究旨在评估暴露于氟虫腈的非洲化蜜蜂中乙酰胆碱酯酶(AChE),羧酸酯酶(CaE)和谷胱甘肽-S-转移酶(GST)的活性。结果显示,亚致死剂量(0.01 ng / bee)的氟虫腈在新出生和衰老的蜜蜂中均能调节所分析的所有同工型(CaE-1,CaE-2和CaE-3)中CaE的活性,并且不影响AChE或GST的活性。还研究了氟虫腈暴露后蜜蜂的恢复情况,这些结果表明,即使停止摄取氟虫腈也可能不会导致单个蜜蜂的完全恢复。即使在低剂量下,氟虫腈也被证明会引起蜜蜂关键酶活性的变化。讨论了这些更改的可能后果。 2016年环境毒性化学(C)SETAC

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