Viruses of Freshwater Mussels during Mass Mortality Events in Oregon and Washington, USA

Author:

Richard Jordan C.12ORCID,Blevins Emilie3,Dunn Christopher D.1ORCID,Leis Eric M.4,Goldberg Tony L.1ORCID

Affiliation:

1. Department of Pathobiological Sciences and Freshwater & Marine Sciences Program, University of Wisconsin-Madison, Madison, WI 53706, USA

2. Southwestern Virginia Field Office, U.S. Fish and Wildlife Service, Abingdon, VA 24210, USA

3. Xerces Society for Invertebrate Conservation, Portland, OR 97232, USA

4. La Crosse Fish Health Center, Midwest Fisheries Center, U.S. Fish and Wildlife Service, Onalaska, WI 54650, USA

Abstract

Freshwater mussels (Unionida) are globally imperiled, in part due to largely unexplained mass mortality events (MMEs). While recent studies have begun to investigate the possibility that mussel MMEs in the Eastern USA may be caused by infectious diseases, mussels in the Western USA have received relatively little attention in this regard. We conducted a two-year epidemiologic investigation of the role of viruses in ongoing MMEs of the Western pearlshell (Margaritifera falcata) and the Western ridged mussel (Gonidea angulata) in the Chehalis River and Columbia River watersheds in the Western USA. We characterized viromes of mussel hemolymph from 5 locations in 2018 and 2020 using metagenomic methods and identified 557 viruses based on assembled contiguous sequences, most of which are novel. We also characterized the distribution and diversity of a previously identified mussel Gammarhabdovirus related to pathogenic finfish viruses. Overall, we found few consistent associations between viruses and mussel health status. Variation in mussel viromes was most strongly driven by location, with little influence from date, species, or health status, though these variables together only explained ~1/3 of variation in virome composition. Our results demonstrate that Western freshwater mussels host remarkably diverse viromes, but no single virus or combination of viruses appears to be associated with morbidity or mortality during MMEs. Our findings have implications for the conservation of imperiled freshwater mussels, including efforts to enhance natural populations through captive propagation.

Funder

U.S. Fish and Wildlife Service

University of Wisconsin-Madison

Publisher

MDPI AG

Subject

Virology,Infectious Diseases

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