2019Unpublished venueOpen access

Viral load alters behavior of the honey bee parasite Varroa destructor v1

Carl Giuffre, David R. Tarpy, Sharon R. Lubkin

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Abstract

The invasive mite Varroa destructor has negatively impacted global apiculture by being a vector for many viruses of the honey bee (Apis mellifera). Until now, most studies have been limited to varroa-honey bee or virus-honey bee interactions. The aim of this study is to bridge the important research gap of varroa-virus interactions by correlating varroa behavior with viral load. Ten-minute video recordings of 200 varroa mites were analyzed, and average speeds of the mites were compared to individual qPCR viral loads for deformed wing virus (DWV) and sacbrood virus (SBV). Statistical models reveal that colony, DWV, and SBV all play a significant role in mite behavior, suggesting that the varroa-virus interaction needs to be an integral part of future studies on honey bee pathogens.

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What this paper is about

The invasive mite Varroa destructor has negatively impacted global apiculture by being a vector for many viruses of the honey bee (Apis mellifera). Until now, most studies have been limited to varroa-honey bee or virus-honey bee interactions. The aim of this study is to bridge the important research gap of varroa-virus interactions by correlating varroa behavior with viral load. Ten-minute video recordings of 200 varroa mites were analyzed, and average speeds of the mites were compared to individual qPCR viral loads for deformed wing virus (DWV) and sacbrood virus (SBV). Statistical models reveal that colony, DWV, and SBV all play a significant role in mite behavior, suggesting that the varroa-virus interaction needs to be an integral part of future studies on honey bee pathogens.

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Available abstract

The invasive mite Varroa destructor has negatively impacted global apiculture by being a vector for many viruses of the honey bee (Apis mellifera). Until now, most studies have been limited to varroa-honey bee or virus-honey bee interactions. The aim of this study is to bridge the important research gap of varroa-virus interactions by correlating varroa behavior with viral load. Ten-minute video recordings of 200 varroa mites were analyzed, and average speeds of the mites were compared to individual qPCR viral loads for deformed wing virus (DWV) and sacbrood virus (SBV). Statistical models reveal that colony, DWV, and SBV all play a significant role in mite behavior, suggesting that the varroa-virus interaction needs to be an integral part of future studies on honey bee pathogens.

Key concepts: Varroa, Varroa destructor, Deformed wing virus, Honey bee, Biology, Beekeeping, Mite, Varroa sensitive hygiene

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