Affiliation:
1. Universidad Nacional Autónoma de México
2. University of California-Davis
Abstract
Abstract
Aquatic habitats provide a bridge for influenza transmission among wild and domestic species. However, water sources pose highly variable physicochemical and ecological characteristics that affect avian influenza virus (AIV) stability. Therefore, the risk of survival or transmissibility of AIV in the environment is quite variable and has been understudied. In this study, we determine the risk of waterborne transmission and environmental persistence of AIV in a wild/domestic bird interface in the Central Mexico plateau (North America) during the winter season using a multi-criteria decision analysis (MCDA). A total of 13 eco-epidemiological factors were selected from public-access databases to develop the risk assessment. The MDCA showed that the Atarasquillo wetland presents a higher persistence risk in January. Likewise, most of the poultry farms at this wild-domestic interface present a high persistence risk (50%). Our results suggest that drinking water may represent a more enabling environment for AIV persistence in contrast with wastewater. Moreover, almost all poultry farms evidence a moderate or high risk of waterborne transmission especially farms close to water bodies. The wildlife/domestic bird interface on the Atarasquillo wetland holds eco-epidemiological factors such as the presence of farms in flood-prone areas, the poultry access to outdoor water, and the use of drinking-water troughs among multiple animal species that may enhance waterborne transmission of AIV. These findings highlight the relevance of understanding the influence of multiple factors on AIV ecology for early intervention and long-term control strategies.
Publisher
Research Square Platform LLC
Reference74 articles.
1. Modelling the ecology and distribution of highly pathogenic avian influenza (H5N1) in the Indian subcontinent;Adhikari D;Current Science,2009
2. Exploring surface water as a transmission medium of avian influenza viruses – systematic infection studies in mallards;Ahrens AK;Emerging Microbes & Infections,2022
3. del Barragán, M. P., & Figueroa, E. (2014). Riesgos a la salud humana relacionados con la expansión urbana en zonas susceptibles a inundación: Caso de estudio Guadalupe la Ciénega, Lerma. Universidad Autónoma del Estado de México.
4. Host Correlates of Avian Influenza Virus Infection in Wild Waterfowl of the Sacramento Valley, California;Bianchini EA;Avian Diseases,2022
5. Distribution of avian influenza viruses according to environmental surveillance during 2014–2018, China;Bo H;Infectious Diseases of Poverty,2021