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被一种三效杀菌剂污染的花粉会引发氧化应激并缩短寿命,不过对来自食物充足蜂群的蜜蜂寿命影响较小。

Pollen contaminated with a triple-action fungicide induced oxidative stress and reduced longevity though with less impact on lifespan in honey bees from well fed colonies.

作者信息

Alves Thais R R, Trivellato Matheus F, Freitas Tainá A L, Kato Aline Y, Gomes Cássia R A, Ferraz Yara M M, Serafim Jéssica A, De Jong David, Prado Evandro P, Vicente Eduardo F, Orsi Ricardo O, Pereira Gener T, Miranda Camila A, Mingatto Fábio E, Nicodemo Daniel

机构信息

Post Graduate Program in Animal Science, São Paulo State University (Unesp), School of Agricultural and Veterinarian Sciences, Jaboticabal, SP, Brazil.

Department of Biosystems Engineering, College of Sciences and Engineering, São Paulo State University (Unesp), Tupã, SP, Brazil.

出版信息

Environ Toxicol Pharmacol. 2024 Dec;112:104587. doi: 10.1016/j.etap.2024.104587. Epub 2024 Nov 4.

Abstract

Experiments were conducted to determine the effects of a triple-action fungicide on bees and whether improved nutrition can ameliorate eventual negative impacts. In cage tests, newly-emerged bees from well fed and from nutritionally-restricted honey bee colonies were fed for five days with pollen from sunflowers that had been sprayed or not with a commercial fungicide containing bixafen, prothioconazole and trifloxystrobin. Bees from well-fed colonies were significantly larger and consumed more uncontaminated pollen. They also exhibited increased glutathione peroxidase activity and higher concentrations of pyridine nucleotides, both of which are involved in antioxidase defense. However, pollen contaminated with fungicide led to an increase in lipoperoxidation, regardless of nutritional status. Bee longevity was reduced by both fungicide contamination of the pollen diet and poor nutritional condition. The fungicide adversely affected bees fed with contaminated pollen, though nutritional supplementation of the bee colonies that reared the bees partially compensated for these effects.

摘要

进行了实验以确定一种三效杀菌剂对蜜蜂的影响,以及改善营养是否可以减轻最终的负面影响。在笼养试验中,将来自营养良好和营养受限的蜂群的新羽化蜜蜂,用喷洒或未喷洒含有联苯吡菌胺、丙硫菌唑和肟菌酯的商业杀菌剂的向日葵花粉喂养五天。来自营养良好蜂群的蜜蜂明显更大,消耗的未受污染花粉更多。它们还表现出谷胱甘肽过氧化物酶活性增加和吡啶核苷酸浓度更高,这两者都参与抗氧化酶防御。然而,无论营养状况如何,被杀菌剂污染的花粉都会导致脂质过氧化增加。花粉饮食中的杀菌剂污染和不良营养状况都会缩短蜜蜂寿命。杀菌剂对食用受污染花粉的蜜蜂产生不利影响,不过饲养蜜蜂的蜂群进行营养补充可部分补偿这些影响。

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