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蜂群特定的化学信息素受瓦螨和变形翅膀病毒的诱导,并在蜜蜂中引发卫生反应。

Stock-specific chemical brood signals are induced by Varroa and Deformed Wing Virus, and elicit hygienic response in the honey bee.

机构信息

Biology Department, University of North Carolina at Greensboro, Greensboro, USA.

Department of Entomology, University of Minnesota, Minneapolis, USA.

出版信息

Sci Rep. 2019 Jun 19;9(1):8753. doi: 10.1038/s41598-019-45008-2.

Abstract

The health of the honey bee Apis mellifera is challenged by the ectoparasitic mite Varroa destructor, and the numerous harmful pathogens it vectors. Existing pesticide-based Varroa controls are not sustainable. In contrast, one promising approach for improved honey bee health is the breeding of hygienic bees, capable of detecting and removing brood that is parasitized or diseased. In three experiments we find evidence to support the hypothesis that stock-specific chemical brood signals are induced by Varroa and Deformed Wing Virus, and elicit hygienic response in the honey bee. By collecting, analyzing, and running bioassays involving mite-infested and control brood extracts from three honey bee breeding stocks we: 1) found evidence that a transferrable chemical signal for hygienic behavior is present in Varroa-infested brood extracts, 2) identified ten stock-specific hydrocarbons as candidates of hygienic signaling, and 3) found that two of these hydrocarbons linked to Varroa and DWV were also elevated in brood targeted for hygienic behavior. These findings expand our understanding of honey bee chemical communication, and facilitate the development of improved hygienic selection tools to breed honey bees with greater resistance to Varroa and associated pathogens.

摘要

蜜蜂的健康受到寄生性外寄生虫瓦螨和它传播的许多有害病原体的挑战。现有的基于农药的瓦螨控制方法是不可持续的。相比之下,改善蜜蜂健康的一种有前途的方法是培育卫生蜜蜂,它们能够检测和清除被寄生或患病的幼虫。在三项实验中,我们有证据支持以下假设:瓦螨和变形翅膀病毒会诱导特定种群的化学幼虫信号,并在蜜蜂中引发卫生反应。通过收集、分析和运行涉及三种蜜蜂繁殖种群中受螨虫和对照幼虫提取物的生物测定,我们:1)发现有证据表明,在受瓦螨感染的幼虫提取物中存在可传递的卫生行为化学信号;2)鉴定出十种特定种群的碳氢化合物作为卫生信号的候选物;3)发现与瓦螨和 DWV 相关的两种碳氢化合物在针对卫生行为的幼虫中也升高了。这些发现扩展了我们对蜜蜂化学通讯的理解,并有助于开发改良的卫生选择工具,以培育对瓦螨和相关病原体具有更强抵抗力的蜜蜂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b07/6584651/9f0451e40f82/41598_2019_45008_Fig1_HTML.jpg

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