Spatiotemporal disease suitability prediction for Oropouche virus and the role of vectors across the Americas

Oropouche virus (OROV) is an emerging arbovirus with increasing outbreaks in South America, yet its environmental drivers and potential range remain poorly understood. Using ecological niche modeling (ENM) with random forests, we assessed the environmental suitability of OROV and its primary vector, Culicoides paraensis , across Brazil and the Americas. We evaluated five pseudo-absence sampling techniques, considering pseudo-absence ratios, buffer radii, and density smoothing factors to determine the most effective modeling approach. Key environmental predictors included humidity, agricultural land-use, and forest cover, while temperature had minimal influence for both the virus and the vector. The resulting suitability model identifies high transmission risk areas in Central and South America, and reveals that environmental suitability patterns align with seasonal fluctuations in case numbers, with peaks in Amazonian states at the beginning of the year and an expansion into non-Amazonian regions later in the year. A bivariate suitability map highlighted strong spatial overlap between OROV and Culicoides paraensis , with potential co-suitability areas with Culex quinquefasciatus mosquito, a suspected secondary vector. These findings enhance understanding of OROV transmission dynamics, supporting risk assessment, surveillance, and vector control strategies.

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Publication Details

Journal
Epidemics
Published
2026-10-01
DOI
https://doi.org/10.1016/j.epidem.2026.100950
Primary Topic
Mosquito-borne diseases and control
Type
article
Field-Weighted Citation Impact
0.00
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article

Spatiotemporal disease suitability prediction for Oropouche virus and the role of vectors across the Americas

Marcel Dunaiski, Oliver J. Brady, Houriiyah Tegally, Graeme Dor et al.
Epidemics
Mosquito-borne diseases and control
article

Spatiotemporal disease suitability prediction for Oropouche virus and the role of vectors across the Americas

Marcel Dunaiski, Oliver J. Brady, Houriiyah Tegally, Graeme Dor, Jenicca Poongavanan, Túlio de Oliveira, Moritz U. G. Kraemer, Luíz Carlos Júnior Alcântara, Marta Giovanetti, Cheryl Baxter, Vagner Fonseca, Ahyoung Lim
article en

Abstract

Oropouche virus (OROV) is an emerging arbovirus with increasing outbreaks in South America, yet its environmental drivers and potential range remain poorly understood. Using ecological niche modeling (ENM) with random forests, we assessed the environmental suitability of OROV and its primary vector, Culicoides paraensis , across Brazil and the Americas. We evaluated five pseudo-absence sampling techniques, considering pseudo-absence ratios, buffer radii, and density smoothing factors to determine the most effective modeling approach. Key environmental predictors included humidity, agricultural land-use, and forest cover, while temperature had minimal influence for both the virus and the vector. The resulting suitability model identifies high transmission risk areas in Central and South America, and reveals that environmental suitability patterns align with seasonal fluctuations in case numbers, with peaks in Amazonian states at the beginning of the year and an expansion into non-Amazonian regions later in the year. A bivariate suitability map highlighted strong spatial overlap between OROV and Culicoides paraensis , with potential co-suitability areas with Culex quinquefasciatus mosquito, a suspected secondary vector. These findings enhance understanding of OROV transmission dynamics, supporting risk assessment, surveillance, and vector control strategies.

Epidemics
Universidade do Estado da Bahia (BR), Università Campus Bio-Medico (IT), Stellenbosch University (ZA), University of Oxford (GB), London School of Hygiene & Tropical Medicine (GB), Fundação Oswaldo Cruz (BR)
Life in Land
Openalex Percentile: Top 9%
Mosquito-borne diseases and control
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