Developing a method to rear Varroa destructor in vitro

IF 1.8 2区 农林科学 Q2 ENTOMOLOGY
Brynn L. Johnson, Cody Prouty, Cameron J. Jack, Charles Stuhl, James D. Ellis
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Abstract

Varroa destructor is a significant mite pest of western honey bees (Apis mellifera). Developing a method to rear and maintain populations of V. destructor in vitro would provide year-round access to the mites, allowing scientists to study their biology, behavior, and control more rapidly. In this study, we determined the impact of various rearing parameters on V. destructor survival and reproduction in vitro. This was done by collecting V. destructor from colonies, placing them in gelatin capsules containing honey bee larvae, and manipulating the following conditions experimentally: rearing temperature, colony source of honey bee larva, behavioral/developmental stages of V. destructor and honey bee larva, and mite:bee larva ratio. Varroa destructor survival was significantly impacted by temperature, colony source of larvae and mite behavioral stage. In addition, V. destructor reproduction was significantly impacted by mite: larva ratio, larval developmental stage, colony source of larva, and temperature. The following conditions optimized mite survival and reproduction in vitro: using a 4:1 mite:larva ratio, beginning the study with late stage uncapped larvae, using mites collected from adult bees, maintaining the rearing temperature at 34.5° C, and screening larval colony source. Ultimately, this research can be used to improve V. destructor in vitro rearing programs.

开发体外饲养破坏者 Varroa 的方法
破坏螨是西方蜜蜂(Apis mellifera)的一种重要害螨。开发一种在体外饲养和维持破坏螨种群的方法将提供全年接触螨虫的机会,使科学家能够更快地研究它们的生物学、行为和控制。在这项研究中,我们确定了各种饲养参数对破坏螨体外生存和繁殖的影响。具体方法是从蜂群中收集破坏螨,将其放入含有蜜蜂幼虫的明胶胶囊中,并在实验中操纵以下条件:饲养温度、蜂群中蜜蜂幼虫的来源、破坏螨和蜜蜂幼虫的行为/发育阶段以及螨虫与蜜蜂幼虫的比例。温度、幼虫的蜂群来源和螨的行为阶段对毁螨存活率有显著影响。此外,螨:幼虫比率、幼虫发育阶段、蜂群幼虫来源和温度也对破坏螨的繁殖有明显影响。以下条件优化了螨虫在体外的存活和繁殖:螨虫与幼虫的比例为 4:1;研究开始时使用晚期未封盖幼虫;使用从成年蜜蜂身上采集的螨虫;饲养温度保持在 34.5 摄氏度;筛选幼虫的蜂群来源。这项研究最终可用于改进破坏蚁体外饲养计划。
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来源期刊
CiteScore
3.90
自引率
9.10%
发文量
81
审稿时长
4-8 weeks
期刊介绍: Experimental and Applied Acarology publishes peer-reviewed original papers describing advances in basic and applied research on mites and ticks. Coverage encompasses all Acari, including those of environmental, agricultural, medical and veterinary importance, and all the ways in which they interact with other organisms (plants, arthropods and other animals). The subject matter draws upon a wide variety of disciplines, including evolutionary biology, ecology, epidemiology, physiology, biochemistry, toxicology, immunology, genetics, molecular biology and pest management sciences.
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