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Rapid GeneXpert surveillance of influenza A virus in seabirds and the environment provides early warning for wildlife health in Aotearoa New Zealand
Journal article   Open access   Peer reviewed

Rapid GeneXpert surveillance of influenza A virus in seabirds and the environment provides early warning for wildlife health in Aotearoa New Zealand

Lia Heremia, Hoani Langsbury, Jackson Treece, Allison K Miller, Stephanie J Waller, James Ussher, Libby Manning, Christine Cleave, Zach Barford, Laura Findlay, …
Virology, Vol.623, 111014
17/06/2026
Handle:
https://hdl.handle.net/10523/51525

Abstract

Point-of-care diagnostics Highly pathogenic avian influenza (HPAI) Wildlife sentinel systems Avian influenza A virus Environmental surveillance GeneXpert
The global expansion of highly pathogenic avian influenza (HPAI) virus A(H5N1) underscores the need for rapid surveillance at high-risk wildlife interfaces. Taiaroa Head (45.7828° S, 170.7333° E) in the South Island of Aotearoa New Zealand hosts a plethora of aquatic wildlife including a large red-billed gull (Chroicocephalus novaehollandiae scopulinus) colony as well as the only mainland breeding colony of northern royal albatross (Diomedea sanfordi). The Royal Albatross Centre is also a major nature tourism destination, attracting tens of thousands of visitors annually, thereby creating a dense ecological and human-wildlife interface vulnerable to viral incursion. We evaluated the GeneXpert II platform using the Xpert® Xpress Flu/RSV cartridge as a field-deployable tool for avian influenza virus detection in environmental and wildlife-associated samples. The assay detected synthetic influenza A viral RNA and multiple endemic low pathogenic avian influenza virus subtypes (A(H3N8), A(H1N9), A(H5N2) and A(H7N7)) circulating in New Zealand birds in controlled spiking experiments. Influenza A virus was reliably identified in spiked environmental water samples with no consistent RT-qPCR inhibition as well as naturally occurring avian influenza virus in duck pond water. Field deployment demonstrated that the system could be operated by non-laboratory personnel with minimal training in a non-clinical setting. This study establishes the feasibility of near-real-time environmental monitoring. Repurposing clinical cartridge-based point-of-care diagnostics offers a practical early warning approach for avian influenza virus surveillance at ecologically and economically significant locations.
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Published (Version of record) Open Access CC BY V4.0
url
https://doi.org/10.1016/j.virol.2026.111014View
Published (Version of record) Open CC BY V4.0

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