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Epidemiology of a Major Honey Bee Pathogen, Deformed Wing Virus: Potential Worldwide Replacement of Genotype A by Genotype B

Abstract

The western honey bee () is of major economic and ecological importance, with elevated rates of colony losses in temperate regions over the last two decades thought to be largely caused by the exotic ectoparasitic mite and deformed wing virus (DWV), which the mite transmits. DWV currently exists as two main genotypes: the formerly widespread DWV-A and the more recently described and rapidly expanding DWV-B. It is an excellent system to understand viral evolution and the replacement of one viral variant by another. Here we synthesise published results on the distribution and prevalence of DWV-A and -B over the period 2008-2021 and present novel data for Germany, Italy and the UK to suggest that (i) DWV-B has rapidly expanded worldwide since its first description in 2004 and (ii) that it is potentially replacing DWV-A. Both genotypes are also found in wild bee species. Based on a simple mathematical model, we suggest that interference between viral genotypes when co-infecting the same host is key to understanding their epidemiology. We finally discuss the consequences of genotype replacement for beekeeping and for wild pollinator species.

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References
1.
Ray A, Davis S, Rasgon J, Grozinger C . Simulated vector transmission differentially influences dynamics of two viral variants of deformed wing virus in honey bees (). J Gen Virol. 2021; 102(11). PMC: 8742989. DOI: 10.1099/jgv.0.001687. View

2.
Gusachenko O, Woodford L, Balbirnie-Cumming K, Evans D . First come, first served: superinfection exclusion in Deformed wing virus is dependent upon sequence identity and not the order of virus acquisition. ISME J. 2021; 15(12):3704-3713. PMC: 8630095. DOI: 10.1038/s41396-021-01043-4. View

3.
Graystock P, Blane E, McFrederick Q, Goulson D, Hughes W . Do managed bees drive parasite spread and emergence in wild bees?. Int J Parasitol Parasites Wildl. 2017; 5(1):64-75. PMC: 5439461. DOI: 10.1016/j.ijppaw.2015.10.001. View

4.
Mallapaty S . Where did Omicron come from? Three key theories. Nature. 2022; 602(7895):26-28. DOI: 10.1038/d41586-022-00215-2. View

5.
Annoscia D, Brown S, di Prisco G, De Paoli E, Del Fabbro S, Frizzera D . Haemolymph removal by Varroa mite destabilizes the dynamical interaction between immune effectors and virus in bees, as predicted by Volterra's model. Proc Biol Sci. 2019; 286(1901):20190331. PMC: 6501932. DOI: 10.1098/rspb.2019.0331. View