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氯化锂通过系统作用有效地杀死了蜜蜂寄生虫瓦螨。

Lithium chloride effectively kills the honey bee parasite Varroa destructor by a systemic mode of action.

机构信息

University of Hohenheim, Apicultural State Institute, 70593, Stuttgart, Germany.

siTOOLs Biotech GmbH, Lochhamerstrasse 29 A, 82152, Planegg, Germany.

出版信息

Sci Rep. 2018 Jan 12;8(1):683. doi: 10.1038/s41598-017-19137-5.

Abstract

Honey bees are increasingly important in the pollination of crops and wild plants. Recent reports of the weakening and periodical high losses of managed honey bee colonies have alarmed beekeeper, farmers and scientists. Infestations with the ectoparasitic mite Varroa destructor in combination with its associated viruses have been identified as a crucial driver of these health problems. Although yearly treatments are required to prevent collapses of honey bee colonies, the number of effective acaricides is small and no new active compounds have been registered in the past 25 years. RNAi-based methods were proposed recently as a promising new tool. However, the application of these methods according to published protocols has led to a surprising discovery. Here, we show that the lithium chloride that was used to precipitate RNA and other lithium compounds is highly effective at killing Varroa mites when fed to host bees at low millimolar concentrations. Experiments with caged bees and brood-free artificial swarms consisting of a queen and several thousand bees clearly demonstrate the potential of lithium as miticidal agent with good tolerability in worker bees providing a promising basis for the development of an effective and easy-to-apply control method for mite treatment.

摘要

蜜蜂在为农作物和野生植物授粉方面的作用越来越重要。最近有报道称,管理良好的蜜蜂群出现了衰弱和周期性大量损失,这让养蜂人、农民和科学家感到震惊。与外寄生螨瓦螨(Varroa destructor)及其相关病毒一起的侵扰已被确定为这些健康问题的关键驱动因素。尽管每年都需要进行治疗以防止蜜蜂群崩溃,但有效的杀螨剂数量很少,在过去 25 年中没有新的有效化合物注册。基于 RNAi 的方法最近被提议作为一种有前途的新工具。然而,根据已发表的方案应用这些方法导致了一个令人惊讶的发现。在这里,我们表明,当以低毫摩尔浓度喂食给宿主蜜蜂时,用于沉淀 RNA 和其他锂化合物的氯化锂在杀死瓦螨方面非常有效。在有笼养蜜蜂和由蜂王和几千只蜜蜂组成的无幼虫人工蜂群的实验中,锂作为杀螨剂具有良好的耐受性,对工蜂有很好的效果,这为开发一种有效且易于应用的螨虫处理控制方法提供了有希望的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e632/5766531/8762b5e4f15d/41598_2017_19137_Fig1_HTML.jpg

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