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Rapid Diagnosis of Avian Influenza Virus in Wild Birds: Use of a Portable rRT-PCR and Freeze-dried Reagents in the Field
Published on: August 2, 2011
Mass mortality events in aquatic mammals caused by avian influenza viruses
Monica Mirolo1, Martin Ludlow1, Albert Osterhaus1
1Research Center for Emerging Infections and Zoonoses (RIZ), University of Veterinary Medicine, Hannover D-30559, Germany.
Abstract:
In recent decades, mass mortality events (MMEs) among aquatic mammals have been caused by morbillivirus or avian influenza virus (AIV) infections. Thus far, AIV infections have been predominantly associated with direct or indirect contact with infected birds, while mammal-to-mammal AIV transmission has not been formally proven in most cases. However, amino acid changes in the HA or PB2 RNA segments previously identified as 'mammalian-adapting mutations' have been documented during AIV epizootics in aquatic mammals. Such mutations are known to increase infectivity and/or virulence of AIV in mammalian species, including humans. Epizootics caused by low-pathogenic AIV (LPAIV) are typically self-limiting respiratory disease outbreaks. In contrast, the ongoing panzootic caused by highly pathogenic AIV (HPAIV) subtype A(H5N1) clade 2.3.4.4b is associated with severe neurological disease and mortality in infected pinniped and cetacean species. The available serological data suggest that enzootic circulation of AIV in aquatic mammals is limited. LPAIV-specific antibodies have been detected in pinniped species only during documented flu outbreaks and have then decreased to undetectable levels, while no AIV-specific antibodies have been detected following recent HPAIV A(H5N1) infections. Since direct interventions in wild pinnipeds are limited, AIV surveillance and investigations into the genetic and phenotypic characteristics of AIVs associated with MMEs in aquatic mammals will be essential to better understand the risk that these viruses pose to often endangered animal populations, as well as to public health.
Insights
Highly pathogenic avian influenza virus (AIV) infections, particularly subtype A(H5N1), are causing severe disease and mortality in aquatic mammals. Further surveillance is crucial to assess risks to wildlife and public health.
Area of Science:
- Veterinary Virology
- Wildlife Disease Ecology
- Infectious Disease Epidemiology
Background:
- Mass mortality events (MMEs) in aquatic mammals are often linked to morbillivirus or avian influenza virus (AIV) infections.
- While AIVs in mammals were historically linked to bird contact, evidence of mammalian adaptation, including specific RNA mutations, is emerging.
- Highly pathogenic AIV (HPAIV) subtype A(H5N1) clade 2.3.4.4b is causing severe neurological disease and mortality in marine mammals.
Purpose of the Study:
- To investigate the role of AIV in aquatic mammal MMEs.
- To understand the adaptation and transmission dynamics of AIV in marine mammal populations.
- To assess the implications of AIV in aquatic mammals for conservation and public health.
Main Methods:
- Analysis of genetic and phenotypic characteristics of AIVs from affected aquatic mammals.
- Serological surveys to detect AIV antibodies in pinniped and cetacean populations.
- Review of epizootic data and case histories of AIV infections in marine wildlife.
Main Results:
- HPAIV A(H5N1) clade 2.3.4.4b is associated with significant mortality and neurological signs in pinnipeds and cetaceans.
- Limited evidence for enzootic AIV circulation in aquatic mammals; antibodies are transient or undetectable post-HPAIV infection.
- Documented 'mammalian-adapting mutations' in HA or PB2 segments of AIVs in aquatic mammals.
Conclusions:
- AIV, especially HPAIV A(H5N1), poses a significant threat to aquatic mammal populations, causing severe disease and mortality.
- Understanding AIV adaptation and transmission in marine mammals is critical for managing endangered species.
- Ongoing surveillance and genetic characterization of AIVs in aquatic mammals are essential for both wildlife and public health protection.
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