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Background: West Nile virus (WNV) is a mosquito-transmitted disease of birds that has caused bird population declines and can spill over into human populations. Previous research has identified bird species that infect a large fraction of the total pool of infected mosquitoes and correlate with human infection risk; however, these analyses cover small spatial regions and cannot be used to predict transmission in bird communities in which these species are rare or absent. Here we present a mechanistic model for WNV transmission that predicts WNV spread (R) in any bird community in North America by scaling up from the physiological responses of individual birds to transmission at the level of the community. We predict unmeasured bird species' responses to infection using phylogenetic imputation, based on these species' phylogenetic relationships with bird species with measured responses.
Results: We focused our analysis on Texas, USA, because it is among the states with the highest total incidence of WNV in humans and is well sampled by birders in the eBird database. Spatio-temporal patterns: WNV transmission is primarily driven by temperature variation across time and space, and secondarily by bird community composition. In Texas, we predicted WNV R to be highest in the spring and fall when temperatures maximize the product of mosquito transmission and survival probabilities. In the most favorable months for WNV transmission (April, May, September and October), we predicted R to be highest in the "Piney Woods" and "Oak Woods & Prairies" ecoregions of Texas, and lowest in the "High Plains" and "South Texas Brush County" ecoregions. Dilution effect: More abundant bird species are more competent hosts for WNV, and predicted WNV R decreases with increasing species richness. Keystone species: We predicted that northern cardinals (Cardinalis cardinalis) are the most important hosts for amplifying WNV and that mourning doves (Zenaida macroura) are the most important sinks of infection across Texas.
Conclusions: Despite some data limitations, we demonstrate the power of phylogenetic imputation in predicting disease transmission in heterogeneous host communities. Our mechanistic modeling framework shows promise both for assisting future analyses on transmission and spillover in heterogeneous multispecies pathogen systems and for improving model transparency by clarifying assumptions, choices and shortcomings in complex ecological analyses.
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http://dx.doi.org/10.1186/s13071-019-3656-8 | DOI Listing |
Ticks Tick Borne Dis
September 2025
Department of Parasitology and Zoology, University of Veterinary Medicine, Budapest, Hungary; HUN-REN-UVMB Climate Change: New Blood-sucking Parasites and Vector-borne Pathogens Research Group, Budapest, Hungary.
The aim of this study was to assess the viability of an opportunistic population of Hyalomma rufipes, as evidence of reproduction had been documented in the southern part of Central Europe, specifically Hungary, in 2022. To assess the current situation, tick collections targeting various mammalian species were organized with the assistance of local veterinarians between September 2022 and May 2024. Over the study period, 1502 ticks were collected; however, none belonged to the Hyalomma genus.
View Article and Find Full Text PDFEcology
September 2025
Laboratoire de Biométrie et Biologie Evolutive UMR 5558, CNRS, Université Claude Bernard Lyon 1, Villeurbanne, France.
Natal dispersal is a key process in ecology and evolution. Similarities of dispersal patterns between relatives can lead to small-scale kin structure within populations with consequences for population dynamics and genetics. Most studies have focused on birds, lizards, and small mammals.
View Article and Find Full Text PDFPoult Sci
August 2025
Centre for Genetic Improvement of Livestock, Department of Animal Biosciences, University of Guelph, Guelph, ON, Canada; Centre for Nutrition Modelling, Department of Animal Biosciences, University of Guelph, Guelph, ON, Canada; Department of Animal and Veterinary Sciences, Aarhus University, Bliche
Late-stage mortality is a significant challenge for the poultry industry, leading to substantial economic losses, concerns about animal welfare, and operational sustainability. Heart-related conditions, including ascites syndrome, pulmonary hypertension syndrome, hypertrophic cardiomyopathy, and sudden death syndrome, contribute significantly to this issue. The increasing prevalence of these conditions is potentially linked to intense selection pressure aimed at maximizing meat yield, particularly breast meat.
View Article and Find Full Text PDFJ Environ Manage
September 2025
Dipartimento di Scienze e Politiche Ambientali, Università degli Studi di Milano, Milano, Italy.
Agriculture has played a pivotal role in shaping European mountain biodiversity. Traditional practices, characterized by low intensity and crop mosaics, have historically created complex, heterogeneous landscapes that supported a high biodiversity level. Agricultural intensification has turned these traditional crop systems into artificial habitats, leading to increased field sizes, habitat fragmentation, and decrease of habitat heterogeneity, contributing to the current farmland biodiversity crisis.
View Article and Find Full Text PDFJ Environ Manage
September 2025
A.P. Leventis Ornithological Research Institute (APLORI), Centre of Excellence, University of Jos Biological Conservatory, P.O.Box 13404, Laminga, Jos, 930001, Plateau State, Nigeria. Electronic address:
Urban green spaces serve as critical refugia for bird conservation in an increasingly urbanized world. To understand how these spaces support avian communities in Afrotropical cities, we investigated bird assemblages across 40 urban green spaces in Jos-Plateau and Abuja-FCT in central Nigeria, covering a total of 91 transects (45.5 km), to examine how green space typologies and attributes influence avian biodiversity.
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