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SERUM CHEMISTRY AND ANTIBODIES AGAINST PATHOGENS IN ANTARCTIC FUR SEALS, WEDDELL SEALS, CRABEATER SEALS, AND ROSS SEALS

  • Morten Tryland*
  • , Ingebjørg H. Nymo
  • , Ole Nielsen
  • , Erling S. Nordøy
  • , Kit M. Kovacs
  • , Bjørn A. Krafft
  • , Stein I. Thoresen
  • , Kjetil Åsbakk
  • , Klaus Osterrieder
  • , Swaantje J. Roth
  • , Christian Lydersen
  • , Jacques Godfroid
  • , Arnoldus S. Blix
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Information on health parameters, such as antibody prevalences and serum chemistry that can reveal exposure to pathogens, disease, and abnormal physiologic conditions, is scarce for Antarctic seal species. Serum samples from Antarctic fur seals (Arctocephalus gazella, n=88) from Bouvetøya (2000-2001 and 2001-2002), and from Weddell seals (Leptonychotes weddelliin=20), Ross seals (Ommatophoca rossiin=20), and crabeater seals (Lobodon carcinophagusn=9) from the pack-ice off Queen Maud Land, Antarctica (2001) were analyzed for enzyme activity, and concentrations of protein, metabolites, minerals, and cortisol. Adult Antarctic fur seal males had elevated levels of total protein (range 64-99g/l) compared to adult females and pups (range 52-79 g/l). Antarctic fur seals had higher enzyme activities of creatine kinase, lactate dehydrogenase, and amylase, compared to Weddell, Ross, and crabeater seals. Antibodies against Brucella spp. were detected in Weddell seals (37%), Ross seals (5%), and crabeater seals (11%), but not in Antarctic fur seals. Antibodies against phocine herpesvirus 1 were detected in all species examined (Antarctic fur seals, 58%; Weddell seals, 100%; Ross seals, 15%; and crabeater seals, 44%). No antibodies against Trichinella spp., Toxoplasma, or phocine distemper virus (PDV) were detected (Antarctic fur seals were not tested for PDV antibodies). Antarctic seals are challenged by reduced sea ice and increasing temperatures due to climate change, and increased anthropogenic activity can introduce new pathogens to these vulnerable ecosystems and represent a threat for these animals. Our data provide a baseline for future monitoring of health parameters of these Antarctic seal species, for tracking the impact of environmental, climatic, and anthropogenic changes in Antarctica over time. © Wildlife Disease Association 2012.
Original languageEnglish
Pages (from-to)632-645
JournalJournal of Wildlife Diseases
Volume48
Issue number3
DOIs
Publication statusPublished - Jul 2012
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 13 - Climate Action
    SDG 13 Climate Action
  2. SDG 14 - Life Below Water
    SDG 14 Life Below Water

Research Keywords

  • Antarctica
  • Brucella pinnipedialis
  • Clinical pathology
  • Phocine distemper
  • Phocine herpesvirus
  • Toxoplasma
  • Trichinella
  • Wildlife

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