Migration of Waterfowl in the East Asian Flyway and Spatial Relationship to HPAI H5N1 Outbreaks
- 1 March 2010
- journal article
- conference paper
- Published by American Association of Avian Pathologists (AAAP) in Avian Diseases
- Vol. 54 (s1) , 466-476
- https://doi.org/10.1637/8914-043009-reg.1
Abstract
Poyang Lake is situated within the East Asian Flyway, a migratory corridor for waterfowl that also encompasses Guangdong Province, China, the epicenter of highly pathogenic avian influenza (HPAI) H5N1. The lake is the largest freshwater body in China and a significant congregation site for waterfowl; however, surrounding rice fields and poultry grazing have created an overlap with wild waterbirds, a situation conducive to avian influenza transmission. Reports of HPAI H5N1 in healthy wild ducks at Poyang Lake have raised concerns about the potential of resilient free-ranging birds to disseminate the virus. Yet the role wild ducks play in connecting regions of HPAI H5N1 outbreak in Asia is hindered by a lack of information about their migratory ecology. During 2007–08 we marked wild ducks at Poyang Lake with satellite transmitters to examine the location and timing of spring migration and identify any spatiotemporal relationship with HPAI H5N1 outbreaks. Species included the Eurasian wigeon (Anas penelope), northern pintail (Anas acuta), common teal (Anas crecca), falcated teal (Anas falcata), Baikal teal (Anas formosa), mallard (Anas platyrhynchos), garganey (Anas querquedula), and Chinese spotbill (Anas poecilohyncha). These wild ducks (excluding the resident mallard and Chinese spotbill ducks) followed the East Asian Flyway along the coast to breeding areas in northern China, eastern Mongolia, and eastern Russia. None migrated west toward Qinghai Lake (site of the largest wild bird epizootic), thus failing to demonstrate any migratory connection to the Central Asian Flyway. A newly developed Brownian bridge spatial analysis indicated that HPAI H5N1 outbreaks reported in the flyway were related to latitude and poultry density but not to the core migration corridor or to wetland habitats. Also, we found a temporal mismatch between timing of outbreaks and wild duck movements. These analyses depend on complete or representative reporting of outbreaks, but by documenting movements of wild waterfowl, we present ecological knowledge that better informs epidemiological investigations seeking to explain and predict the spread of avian influenza viruses.Keywords
This publication has 35 references indexed in Scilit:
- Migration of Whooper Swans and Outbreaks of Highly Pathogenic Avian Influenza H5N1 Virus in Eastern AsiaPLOS ONE, 2009
- Frequent inter-species transmission and geographic subdivision in avian influenza viruses from wild birdsVirology, 2009
- Knowledge of causes, clinical features and diagnosis of common zoonoses among medical practitioners in TanzaniaBMC Infectious Diseases, 2008
- Extreme endurance flights by landbirds crossing the Pacific Ocean: ecological corridor rather than barrier?Proceedings Of The Royal Society B-Biological Sciences, 2008
- Underreporting of Human Alveolar Echinococcosis, GermanyEmerging Infectious Diseases, 2008
- Wild Ducks as Long-Distance Vectors of Highly Pathogenic Avian Influenza Virus (H5N1)Emerging Infectious Diseases, 2008
- Mapping H5N1 highly pathogenic avian influenza risk in Southeast AsiaProceedings of the National Academy of Sciences, 2008
- Using RRT-PCR analysis and virus isolation to determine the prevalence of avian influenza virus infections in ducks at Minto Flats State Game Refuge, Alaska, during August 2005Archiv für die gesamte Virusforschung, 2007
- Hampered Foraging and Migratory Performance in Swans Infected with Low-Pathogenic Avian Influenza A VirusPLOS ONE, 2007
- Properties and Dissemination of H5N1 Viruses Isolated during an Influenza Outbreak in Migratory Waterfowl in Western ChinaJournal of Virology, 2006