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首页> 外文期刊>Journal of Environmental & Analytical Toxicology >In-Hive Miticides and their Effect on Queen Supersedure and Colony Growth in the Honey Bee (Apis mellifera)
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In-Hive Miticides and their Effect on Queen Supersedure and Colony Growth in the Honey Bee (Apis mellifera)

机译:蜂巢内杀螨剂及其对女王蜂的取代和蜂群生长的影响

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Honey bees (Apis mellifera) contribute an estimated $200 billion annually to the global economy, primarily through crop pollination. Despite their importance, the number of managed honey bee colonies continues to decline. Recent surveys have shown that colony losses are attributed in great part to problems associated with the ectoparasitic mite Varroa destructor, and with issues related to poor queen quality (particularly premature queen replacement), which often result in decreased colony productivity and increased risk of mortality. We aimed to investigate how sublethal exposure to beekeeper-applied miticides affects honey bees at both the individual (queen) and colony levels. We did so by comparing the growth (comb built, brood produced, food stored, and worker population), queen supersedure rates, and winter survival probabilities of colonies that were headed by queens that were raised in either miticide-laden or miticide-free beeswax cups then housed in hives that were either treated with miticides or left untreated. Contrary to our prediction, we found that treated colonies headed by queens raised in miticide-laden beeswax built significantly more worker and drone comb, and stored more food, than any other colony treatment. We did not, however, observe any other significant effect of colony treatment on the amount of brood production, worker population size, queen supersedure rate, or colony winter survival. Thus, we failed to observe a direct negative effect of miticide exposure at the colony level. More studies are needed to further test the potentially detrimental synergistic effects of in-hive miticides on honey bee health at the colony level.
机译:蜜蜂(Apis mellifera)每年主要通过农作物授粉为全球经济贡献约2000亿美元。尽管它们很重要,但管理的蜂群数量仍在下降。最近的调查表明,菌落的丧失在很大程度上归因于与寄生螨螨Varroa破坏物有关的问题,以及与女王质量差(尤其是过早的女王更换)有关的问题,这通常导致菌落生产力下降和死亡风险增加。我们旨在研究在致死性条件下暴露于养蜂人施用的杀螨剂如何在个体(群体)和群体水平上影响蜜蜂。我们是通过比较生长在充满杀螨剂或无杀螨剂的蜂蜡中的皇后为首的菌落的生长情况(蜂巢的建成,育成的产卵,食物的储存和工人的数量),皇后的替代率和冬季存活率的方式来做到的然后将杯子放在经过杀虫剂处理或未经处理的蜂箱中。与我们的预测相反,我们发现,与其他菌落处理方法相比,以充满杀螨剂的蜂蜡长出的皇后为首的经处理的菌落可以建造更多的工人和无人机梳子,并可以储存更多的食物。但是,我们没有观察到菌落处理对育雏量,工人数量,女王的替代率或菌落冬季存活率有任何其他显着影响。因此,我们未能在菌落水平上观察到杀螨剂暴露的直接负面影响。需要更多的研究来进一步测试蜂巢杀螨剂对蜂群健康的潜在有害协同作用。

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