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Evol Appl. Avian influenza at both ends of a migratory flyway: characterizing viral genomic diversity to optimize surveillance plans for North America

Giuseppe

Emeritus
Abstract. Avian influenza at both ends of a migratory flyway: characterizing viral genomic diversity to optimize surveillance plans for North America.

ORIGINAL ARTICLE

Avian influenza at both ends of a migratory flyway: characterizing viral genomic diversity to optimize surveillance plans for North America

[Free Full PDF document at this LINK. EDITED.]

John M. Pearce, 1 Andrew M. Ramey, 1 Paul L. Flint, 1 Anson V. Koehler, 1 Joseph P. Fleskes, 2 J. Christian Franson, 3 Jeffrey S. Hall, 3 Dirk V. Derksen 1 and Hon S. Ip 3

1 Alaska Science Center, U.S. Geological Survey, Anchorage, AK, USA
2 Western Ecological Research Center, U.S. Geological Survey, Dixon, CA, USA
3 National Wildlife Health Center, U.S. Geological Survey, Madison, WI, USA

Keywords: avian influenza, genetic, low pathogenic, migration, northern pintail, virus, waterfowl.

Correspondence: John M. Pearce, Alaska Science Center, U.S. Geological Survey, 4210 University Drive, Anchorage, AK 99508, USA. Tel.: +1 907 786 7094; fax: +1 907 786 7021; e-mail: jpearce@usgs.gov

Received: 16 December 2008
Accepted: 20 March 2009
doi:10.1111/j.1752-4571.2009.00071.x


Abstract

Although continental populations of avian influenza viruses are genetically distinct, transcontinental reassortment in low pathogenic avian influenza (LPAI) viruses has been detected in migratory birds. Thus, genomic analyses of LPAI viruses could serve as an approach to prioritize species and regions targeted by North American surveillance activities for foreign origin highly pathogenic avian influenza (HPAI).
To assess the applicability of this approach, we conducted a phylogenetic and population genetic analysis of 68 viral genomes isolated from the northern pintail (Anas acuta) at opposite ends of the Pacific migratory flyway in North America.
We found limited evidence for Asian LPAI lineages on wintering areas used by northern pintails in California in contrast to a higher frequency on breeding locales of Alaska.
Our results indicate that the number of Asian LPAI lineages observed in Alaskan northern pintails, and the nucleotide composition of LPAI lineages, is not maintained through fall migration. Accordingly, our data indicate that surveillance of Pacific Flyway northern pintails to detect foreign avian influenza viruses would be most effective in Alaska. North American surveillance plans could be optimized through an analysis of LPAI genomics from species that demonstrate evolutionary linkages with European or Asian lineages and in regions that have overlapping migratory flyways with areas of HPAI outbreaks.

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Re: Evol Appl. Avian influenza at both ends of a migratory flyway: characterizing viral genomic diversity to optimize surveillance plans for North America.

North American surveillance plans could be optimized through an analysis of LPAI genomics from species that demonstrate evolutionary linkages with European or Asian lineages and in regions that have overlapping migratory flyways with areas of HPAI outbreaks.

The 2007 HPAI testing was done on 73 species. Only 4 of the targeted species had HPAI. Results are at:
http://alaska.fws.gov/media/avian_influenza/2007_sampling_accomplishment_report.pdf

Perhaps we could assume that those same 73 species should be targets for any analysis of LPAI genomics.

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