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February 17, 20260 citationsOpen Access

Exposure Without Active Infection: Surveillance of Influenza A Viruses and Coronaviruses in Antarctic Seabirds

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JMJennifer Oliveira MeloFaculdades Oswaldo CruzLSLeonardo Corrêa da SilvaFundação Oswaldo CruzMBMartha Lima BrandãoInternational Olive Council

Key Points

  • This research aims to understand the circulation of influenza A viruses and coronaviruses in Antarctic seabirds.
  • Conducted viral surveillance during December 2024 and January 2025
  • Sampled 199 bird individuals from six species in Antarctica
  • Tested cloacal and oropharyngeal swabs for influenza A viruses and coronaviruses by RT-PCR
  • Screened blood samples for antibodies using enzyme-linked immunosorbent assay
  • All swabs were negative for active influenza A viruses and coronaviruses
  • Detected influenza A virus antibodies in 11.3% of tested birds
  • Identified hemagglutination inhibition subtypes H6 and H11 in two penguins and H1, H5, H6, and H9 in one skua

Abstract

Understanding the circulation of influenza A viruses and other respiratory pathogens in Antarctic wildlife is essential for anticipating outbreaks and evaluating potential impacts on vulnerable populations. During the austral summer of December 2024 and January 2025, we conducted viral surveillance in six bird species breeding at Lions Rump, King George Island, South Shetland Islands, Antarctica. A total of 199 individuals were sampled, including Pygoscelis papua (gentoo penguin; n = 81), Pygoscelis adeliae (Adélie penguin; n = 79), Pygoscelis antarcticus (chinstrap penguin; n = 34), Stercorarius antarcticus (brown skua; n = 2), Chionis albus (snowy sheathbill; n = 2), and Eudyptes chrysolophus (macaroni penguin; n = 1). All cloacal and oropharyngeal swabs tested negative for influenza A viruses and coronaviruses by RT-PCR. Blood samples from 177 birds were screened by enzyme-linked immunosorbent assay, which detected influenza A virus antibodies in 20 individuals (11.3%). Hemagglutination inhibition assays identified subtypes H6 and H11 in two penguins and H1, H5, H6, and H9 in one skua. These findings reveal no evidence of active viral infection during the sampling period but provide serological evidence of past exposure in seabird populations at Lions Rump. Continued surveillance is essential to characterize viral dynamics in Antarctic ecosystems and to support early detection and preparedness for potential incursions of emerging high-pathogenicity influenza A viruses.

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Cite This Study

Melo et al. (2026) studied this question.

synapsesocial.com/papers/6994055d4e9c9e835dfd62b6https://doi.org/10.3390/v18020248
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Lack of Highly Pathogenic Avian Influenza H5N1 in the South Shetland Islands in Antarctica, Early 20232024 · 10 citations
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  3. 3Skuas as sentinels of high pathogenicity avian influenza H5N1 on the Antarctic Peninsula in the 2024/2025 austral summer2026 · 4 citations
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  5. 5First detection of influenza A virus subtypes H1N1 and H3N8 in the Antarctic region: King George Island, 20232024 · 4 citations