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首页> 外文期刊>Ecotoxicology >The Effects of Four Insect Growth-Regulating (IGR) Insecticides on Honeybee (Apis mellifera L.) Colony Development, Queen Rearing and Drone Sperm Production.
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The Effects of Four Insect Growth-Regulating (IGR) Insecticides on Honeybee (Apis mellifera L.) Colony Development, Queen Rearing and Drone Sperm Production.

机译:四种昆虫生长调节(IGR)杀虫剂对蜜蜂(Apis mellifera L.)菌落发育,女王饲养和无人机精子生产的影响。

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This study assessed the effects of exposure to IGRs on the long-term development of the honeybee colony, viability of queens and sperm production in drones and integrated the data into a honeybee population model. Colonies treated with diflubenzuron resulted in a short-term reduction in the numbers of adult bees and brood. Colonies treated with fenoxycarb declined during the season earlier and started the season slower. The number of queens that successfully mated and laid eggs was affected in the fenoxycarb treatment group but there were no significant differences in the drone sperm counts between the colonies. An existing honeybee population model was modified to include exposure to IGRs. In the model, fenoxycarb reduced the winter size of the colony, with the greatest effects following a June or an August application. Assuming a 'larvae per nurse bee' ratio of 1.5 for brood rearing capability, the reduction in winter size of a colony following a fenoxycarb application was at its worst about 8%. However, even if only those bees reared within 2 weeks of the IGR being applied are subject to premature ageing, this might significantly reduce the size of over-wintering colonies, and increase the chance of the bee population dwindling and dying in late winter or early spring.
机译:这项研究评估了暴露于IGRs对蜜蜂菌落的长期发育,蜂后的生存能力和精子产量的影响,并将数据整合到蜜蜂种群模型中。用双氟苯隆处理的菌落导致成年蜜蜂和育雏数量的短期减少。用苯氧威治疗的菌落在较早的季节下降,而较慢的季节开始。在苯氧威治疗组中,成功交配和产卵的皇后数量受到影响,但菌落之间的无人机精子数量没有显着差异。对现有的蜜蜂种群模型进行了修改,以包括对IGR的暴露。在该模型中,苯氧威减少了菌落的冬季大小,在6月或8月施用后效果最大。假设育雏能力的“每只护养蜂的幼虫”比率为1.5,则在施用了苯氧威后,蚁群冬季大小的减少最坏时约为8%。但是,即使只有在应用IGR后2周内饲养的蜜蜂过早衰老,这也可能会大大减少越冬菌落的规模,并增加蜜蜂种群在冬季晚期或早期死亡和死亡的机会。弹簧。

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