A Review of Circumpolar Arctic Marine Mammal Health—A Call to Action in a Time of Rapid Environmental Change
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Published:2023-07-14
Issue:7
Volume:12
Page:937
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ISSN:2076-0817
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Container-title:Pathogens
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language:en
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Short-container-title:Pathogens
Author:
Barratclough Ashley1, Ferguson Steven H.2ORCID, Lydersen Christian3, Thomas Peter O.4, Kovacs Kit M.3
Affiliation:
1. National Marine Mammal Foundation, 2240 Shelter Island Drive, San Diego, CA 92106, USA 2. Arctic Aquatic Research Division, Fisheries and Oceans Canada, Winnipeg, MB R3T 2N6, Canada 3. Norwegian Polar Institute, Fram Centre, 9296 Tromsø, Norway 4. Marine Mammal Commission, 4340 East-West Highway, Room 700, Bethesda, MD 20814, USA
Abstract
The impacts of climate change on the health of marine mammals are increasingly being recognised. Given the rapid rate of environmental change in the Arctic, the potential ramifications on the health of marine mammals in this region are a particular concern. There are eleven endemic Arctic marine mammal species (AMMs) comprising three cetaceans, seven pinnipeds, and the polar bear (Ursus maritimus). All of these species are dependent on sea ice for survival, particularly those requiring ice for breeding. As air and water temperatures increase, additional species previously non-resident in Arctic waters are extending their ranges northward, leading to greater species overlaps and a concomitant increased risk of disease transmission. In this study, we review the literature documenting disease presence in Arctic marine mammals to understand the current causes of morbidity and mortality in these species and forecast future disease issues. Our review highlights potential pathogen occurrence in a changing Arctic environment, discussing surveillance methods for 35 specific pathogens, identifying risk factors associated with these diseases, as well as making recommendations for future monitoring for emerging pathogens. Several of the pathogens discussed have the potential to cause unusual mortality events in AMMs. Brucella, morbillivirus, influenza A virus, and Toxoplasma gondii are all of concern, particularly with the relative naivety of the immune systems of endemic Arctic species. There is a clear need for increased surveillance to understand baseline disease levels and address the gravity of the predicted impacts of climate change on marine mammal species.
Funder
Norwegian Ministry of Climate and Environment, Norway
Subject
Infectious Diseases,Microbiology (medical),General Immunology and Microbiology,Molecular Biology,Immunology and Allergy
Reference421 articles.
1. Meredith, M., Sommerkorn, M., Cassota, S., Derksen, C., Ekaykin, A., Hollowed, A., Kofinas, G., Mackintosh, A., Melbourne-Thomas, J., and Muelbert, M.M.C. (2022, September 22). Polar regions, IPCC Special Report on the Ocean & Cryosphere in a Changing Climate, Available online: https://repository.library.noaa.gov/view/noaa/27411/noaa_27411_DS1.pdf. 2. Climate change impacts on seals and whales in the North Atlantic Arctic and adjacent shelf seas;Kovacs;Sci. Prog.,2008 3. Footprints of climate change in the Arctic marine ecosystem;Wassmann;Glob. Chang. Biol.,2011 4. Key indicators of Arctic climate change: 1971–2017;Box;Environ. Res. Lett.,2019 5. Viral emergence in marine mammals in the North Pacific may be linked to Arctic sea ice reduction;VanWormer;Sci. Rep.,2019
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