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首页> 外文期刊>PLoS One >Field rates of Sivanto ? (flupyradifurone) and Transform ? (sulfoxaflor) increase oxidative stress and induce apoptosis in honey bees ( Apis mellifera L.)
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Field rates of Sivanto ? (flupyradifurone) and Transform ? (sulfoxaflor) increase oxidative stress and induce apoptosis in honey bees ( Apis mellifera L.)

机译:Sivanto的实地率? (FlupyRadifurone)和变换? (SulfoxaFlor)增加氧化应激并诱导蜂蜜蜜蜂(Apis Mellifera L)的细胞凋亡

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Pesticide exposures can have detrimental impacts on bee pollinators, ranging from immediate mortality to sub-lethal impacts. Flupyradifurone is the active ingredient in Sivanto ? and sulfoxaflor is the active ingredient in Transform ? . They are both relatively new insecticides developed with an intent to reduce negative effects on bees, when applied to bee-attractive crops. With the growing concern regarding pollinator health and pollinator declines, it is important to have a better understanding of any potential negative impacts, especially sub-lethal, of these pesticides on bees. This study reports novel findings regarding physiological stress experienced by bees exposed to field application rates of these two insecticides via a Potter Tower sprayer. Two contact exposure experiments were conducted—a shorter 6-hour study and a longer 10-day study. Honey bee mortality, sugar syrup and water consumption, and physiological responses (oxidative stress and apoptotic protein assays) were assessed in bees exposed to Sivanto ? and Transform ? , and compared to bees in control group. For the longer, 10-day contact exposure experiment, only the Sivanto ? group was compared to the control group, as high mortality recorded in the sulfoxaflor treatment group during the shorter contact exposure experiment, made the latter group unfeasible to test in the longer 10-days experiment. In both the studies, sugar syrup and water consumptions were significantly different between treatment groups and controls. The highest mortality was observed in Transform ? exposed bees, followed by the Sivanto ? exposed bees. Estimates of reactive oxygen/nitrogen species indicated significantly elevated oxidative stress in both pesticide treatment groups, when compared to controls. Caspase-3 protein assays, an indicator of onset of apoptosis, was also significantly higher in the pesticide treatment groups. These differences were largely driven by post exposure duration, indicating sub-lethal impacts. Further, our findings also emphasize the need to revisit contact exposure impacts of Sivanto ? , given the sub-lethal impacts and mortality observed in our long-term (10-day) contact exposure experiment.
机译:农药曝光可能对蜂粉粉的人产生有害影响,从立即死亡率到亚致死的影响。 Flupyradifurone是Sivanto的活性成分吗?和苏氟苏仑是转化的活性成分? 。它们都是相对较新的杀虫剂,而在应用于蜜蜂有吸引力的作物时,目的是减少对蜜蜂的负面影响。随着对粉尘卫生卫生和粉碎机的越来越令人担忧,重要的是要更好地了解这些蜜蜂上这些农药的任何潜在的负面影响,特别是亚麻致死。本研究报告了通过陶瓷塔喷雾器暴露于这两种杀虫剂的现场申请率的蜜蜂经历的生理压力的新发现。进行了两个接触曝光实验 - 较短的6小时研究和更长的10天的研究。在暴露于Sivanto的蜜蜂中评估蜂蜜蜂死亡,糖糖浆和耗水量,以及生理反应(氧化应激和凋亡蛋白质测定)?和变换? ,并与对照组的蜜蜂相比。对于较长,10天的联系曝光实验,只有Sivanto?将组与对照组进行比较,因为在较短的接触曝光实验期间,在苏福洛治疗组中记录的高死亡率,使后期组在较长10天的实验中进行测试。在治疗组和对照之间的研究中,糖糖浆和水消耗显着差异。转化中观察到最高的死亡率?暴露的蜜蜂,其次是sivanto?暴露的蜜蜂。与对照相比,反应性氧/氮物质的估计表明两种农药治疗组中的氧化应激显着升高。 Caspase-3蛋白质测定,凋亡发生的指标,在​​农药治疗组中也显着高。这些差异在很大程度上受到曝光后持续时间,表明亚致死的影响。此外,我们的调查结果还强调需要重新审视Sivanto的接触暴露会影响吗?鉴于我们长期(10天)接触暴露实验中观察到的亚致死的影响和死亡率。

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