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Does influenza A virus infection affect movement behaviour during stopover in its wild reservoir host?
Author(s) -
Daniel Bengtsson,
Kamran Safi,
Alexis Avril,
Wolfgang Fiedler,
Martin Wikelski,
Gunnar Gunnarsson,
Johan Elmberg,
Conny Tolf,
Björn Olsén,
Jonas Waldenström
Publication year - 2016
Publication title -
royal society open science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.84
H-Index - 51
ISSN - 2054-5703
DOI - 10.1098/rsos.150633
Subject(s) - host (biology) , affect (linguistics) , movement (music) , influenza a virus , biology , virology , virus , ecology , communication , psychology , philosophy , aesthetics
The last decade has seen a surge in research on avian influenza A viruses (IAVs), in part fuelled by the emergence, spread and potential zoonotic importance of highly pathogenic virus subtypes. The mallard ( Anas platyrhynchos ) is the most numerous and widespread dabbling duck in the world, and one of the most important natural hosts for studying IAV transmission dynamics. In order to predict the likelihood of IAV transmission between individual ducks and to other hosts, as well as between geographical regions, it is important to understand how IAV infection affects the host. In this study, we analysed the movements of 40 mallards equipped with GPS transmitters and three-dimensional accelerometers, of which 20 were naturally infected with low pathogenic avian influenza virus (LPAIV), at a major stopover site in the Northwest European flyway. Movements differed substantially between day and night, as well as between mallards returning to the capture site and those feeding in natural habitats. However, movement patterns did not differ between LPAIV infected and uninfected birds. Hence, LPAIV infection probably does not affect mallard movements during stopover, with high possibility of virus spread along the migration route as a consequence.

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