Literature DB >> 20688710

Canada geese and the epidemiology of avian influenza viruses.

Mark T Harris1, Justin D Brown, Virginia H Goekjian, M Page Luttrell, Rebecca L Poulson, Benjamin R Wilcox, David E Swayne, David E Stallknecht.   

Abstract

Canada geese (Branta canadensis) are numerous, highly visible, and widely distributed in both migratory and resident populations in North America; as a member of the order Anseriformes, they are often suggested as a potential reservoir and source for avian influenza (AI) viruses. To further examine the role of Canada Geese in the ecology of AI, we re-evaluated existing literature related to AI virus in this species and tested breeding populations of Canada Geese from three states (Georgia, West Virginia, and Minnesota, USA) by virus isolation and serology. The ability of AI virus to persist in goose feces under experimental conditions also was evaluated as an additional measure of the potential for this species to serve as an AI virus reservoir. Virus was not isolated from 1,668 cloacal swabs and type-specific antibody prevalence was low (4/335, 1.2%). Finally, under experimental conditions, AI virus persistence in goose feces and in water contaminated with goose feces was limited as compared to published estimates from duck feces and water. Our results are consistent with historic reports of a low prevalence of AI virus infection in this species, and we suggest that Canada Geese play a minor, if any, role as a reservoir for low pathogenic AI viruses that naturally circulate in wild bird populations.

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Year:  2010        PMID: 20688710     DOI: 10.7589/0090-3558-46.3.981

Source DB:  PubMed          Journal:  J Wildl Dis        ISSN: 0090-3558            Impact factor:   1.535


  7 in total

1.  Subtype-specific influenza A virus antibodies in Canada geese (Branta canadensis).

Authors:  Whitney M Kistler; David E Stallknecht; Thomas J DeLiberto; Kyle Van Why; Michael J Yabsley
Journal:  Vet Microbiol       Date:  2015-03-30       Impact factor: 3.293

2.  Subtype Diversity of Influenza A Virus in North American Waterfowl: a Multidecade Study.

Authors:  Elena R Diskin; Kimberly Friedman; Scott Krauss; Jacqueline M Nolting; Rebecca L Poulson; Richard D Slemons; David E Stallknecht; Robert G Webster; Andrew S Bowman
Journal:  J Virol       Date:  2020-05-18       Impact factor: 5.103

3.  Bird harvesting practices and knowledge, risk perceptions, and attitudes regarding avian influenza among Canadian First Nations subsistence hunters: implications for influenza pandemic plans.

Authors:  Nadia A Charania; Ian D Martin; Eric N Liberda; Richard Meldrum; Leonard J S Tsuji
Journal:  BMC Public Health       Date:  2014-10-28       Impact factor: 3.295

4.  Where do all the subtypes go? Temporal dynamics of H8-H12 influenza A viruses in waterfowl.

Authors:  Michelle Wille; Neus Latorre-Margalef; Conny Tolf; Rebecca Halpin; David Wentworth; Ron A M Fouchier; Jayna Raghwani; Oliver G Pybus; Björn Olsen; Jonas Waldenström
Journal:  Virus Evol       Date:  2018-08-14

5.  Evidence that life history characteristics of wild birds influence infection and exposure to influenza A viruses.

Authors:  Craig R Ely; Jeffrey S Hall; Joel A Schmutz; John M Pearce; John Terenzi; James S Sedinger; Hon S Ip
Journal:  PLoS One       Date:  2013-03-04       Impact factor: 3.240

6.  Potential disease transmission from wild geese and swans to livestock, poultry and humans: a review of the scientific literature from a One Health perspective.

Authors:  Johan Elmberg; Charlotte Berg; Henrik Lerner; Jonas Waldenström; Rebecca Hessel
Journal:  Infect Ecol Epidemiol       Date:  2017-04-10

7.  Circulation of low pathogenic avian influenza (LPAI) viruses in wild birds and poultry in the Netherlands, 2006-2016.

Authors:  Saskia A Bergervoet; Sylvia B E Pritz-Verschuren; Jose L Gonzales; Alex Bossers; Marjolein J Poen; Jayeeta Dutta; Zenab Khan; Divya Kriti; Harm van Bakel; Ruth Bouwstra; Ron A M Fouchier; Nancy Beerens
Journal:  Sci Rep       Date:  2019-09-23       Impact factor: 4.379

  7 in total

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