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卫生诱集蜂卵信息素作为检测蜜蜂(膜翅目:蜜蜂科)对瓦螨(中气门目:瓦螨科)抗性的工具。

Hygiene-Eliciting Brood Semiochemicals as a Tool for Assaying Honey Bee (Hymenoptera: Apidae) Colony Resistance to Varroa (Mesostigmata: Varroidae).

机构信息

Department of Biology, University of North Carolina Greensboro, P.O. Box 26170, Greensboro, NC 27402, USA.

Department of Entomology, University of California Riverside, 165 Entomology Building, Citrus Drive, Riverside, CA 92521, USA.

出版信息

J Insect Sci. 2021 Nov 1;21(6). doi: 10.1093/jisesa/ieab064.

Abstract

Despite numerous interventions, the ectoparasitic mite Varroa (Varroa destructor Anderson and Trueman [Mesostigmata: Varroidae]) and the pathogens it vectors remain a primary threat to honey bee (Apis mellifera Linnaeus [Hymenoptera: Apidae]) health. Hygienic behavior, the ability to detect, uncap, and remove unhealthy brood from the colony, has been bred for selectively for over two decades and continues to be a promising avenue for improved Varroa management. Although hygienic behavior is expressed more in Varroa-resistant colonies, hygiene does not always confer resistance to Varroa. Additionally, existing Varroa resistance selection methods trade efficacy for efficiency, because those achieving the highest levels of Varroa resistance can be time-consuming, and thus expensive and impractical for apicultural use. Here, we tested the hypothesis that hygienic response to a mixture of semiochemicals associated with Varroa-infested honey bee brood can serve as an improved tool for predicting colony-level Varroa resistance. In support of our hypothesis, we demonstrated that a mixture of the compounds (Z)-10-tritriacontene, (Z)-8-hentriacontene, (Z)-8-heptadecene, and (Z)-6-pentadecene triggers hygienic behavior in a two-hour assay, and that high-performing colonies (hygienic response to ≥60% of treated cells) have significantly lower Varroa infestations, remove significantly more introduced Varroa, and are significantly more likely to survive the winter compared to low-performing colonies (hygienic response to <60% of treated cells). We discuss the relative efficacy and efficiency of this assay for facilitating apiary management decisions and selection of Varroa-resistant honey bees, as well as the relevance of these findings to honey bee health, pollination services, and social insect communication.

摘要

尽管采取了众多干预措施,寄生性螨类瓦螨(Varroa destructor Anderson and Trueman [Mesostigmata: Varroidae])及其传播的病原体仍然是蜜蜂(Apis mellifera Linnaeus [Hymenoptera: Apidae])健康的主要威胁。清洁行为,即能够检测、揭开并从蜂群中清除不健康的幼虫的能力,已经经过了二十多年的选择性培育,并且仍然是改善瓦螨管理的一个有前途的途径。尽管清洁行为在抗瓦螨的蜂群中表现得更为明显,但清洁行为并不总是能赋予对瓦螨的抗性。此外,现有的瓦螨抗性选择方法在功效和效率之间进行权衡,因为那些达到最高瓦螨抗性水平的方法可能需要很长时间,因此对于养蜂业来说既费时又不切实际。在这里,我们测试了这样一个假设,即对与受瓦螨感染的蜜蜂幼虫相关的混合物半化学物质的清洁反应可以作为预测群体水平瓦螨抗性的一种改进工具。我们的假设得到了支持,我们证明了一种化合物混合物(Z)-10-三十碳烯、(Z)-8-三十碳烯、(Z)-8-十七碳烯和(Z)-6-十五碳烯在两小时的测定中能引发清洁行为,并且表现良好的蜂群(对≥60%的处理细胞有清洁反应)的瓦螨感染率显著降低,清除的引入瓦螨数量显著增加,并且与表现不佳的蜂群(对<60%的处理细胞有清洁反应)相比,在冬季更有可能存活。我们讨论了这种测定方法在促进养蜂场管理决策和选择抗瓦螨的蜜蜂方面的相对功效和效率,以及这些发现对蜜蜂健康、授粉服务和社会昆虫通讯的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/634b/8559158/9d1038ab2c25/ieab064f0001.jpg

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