Completed Infection & Immunity Genetics & Molecular Biology

Virus transmission dynamics and the immune response of birds to avian influenza.

In plain English

AI plain-English summary

A chicken infected with H5N1 avian influenza can shed enough virus in a single day to infect an entire flock—but scientists still do not know exactly how much virus different bird species release, or for how long. This matters because H5N1 is spreading globally among wild birds and poultry, and it can also jump to humans. Current control measures—culling, movement restrictions—are blunt instruments. Without knowing how easily the virus transmits between chickens, turkeys, and ducks, or how long each species remains infectious, authorities cannot predict outbreaks or target interventions effectively. The immune response of birds to the virus is also poorly understood, which limits vaccine development. This project is fundamental science. It will measure infection dynamics and immune responses in domestic fowl and wild birds under controlled conditions. The results will not produce an immediate vaccine or policy. But they will fill a critical knowledge gap: how the virus behaves in its natural hosts. In the short term, this data can refine outbreak models and inform biosecurity. In the long term, understanding bird immunity could guide vaccine design—and because controlling the virus in birds reduces the risk of a human pandemic, the stakes extend well beyond the farm.

View original technical description
The global spread of H5N1 highly pathogenic avian influenza viruses and their ability to infect not only birds but humans emphasises that human and animal health are unavoidably linked. At present avian influenza remains an animal disease problem under urgent need for control but control in birds will also reduce the potential for a human influenza pandemic. Our knowledge of the behaviour of avian influenza viruses in domestic fowl and wild birds is limited. This proposal poses some fundamental questions that address how the easily the virus can infect chickens, turkeys and ducks; how much, and for how long, virus is shed following infection in each species; and how avian influenza virus infection is controlled by the immune response of birds. Fundamental studies of this type will be critical to the design and implementation of control measures in the short term and the long term.

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Researchers

Adrian Smith (Co-Investigator)Colin Butter (Principal Investigator)

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Virus transmission dynamics and the immune response of birds to avian influenza
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Original classification

Research Grant

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