Skip to main navigation Skip to search Skip to main content

Contrasting Ecological Patterns of Venezuelan Equine Encephalitis and Madariaga Viruses in Small Mammal and Mosquito Populations from Two Enzootic Regions of Panama

  • Josefrancisco Galué
  • , William M. de Souza
  • , Rolando Torres-Cosme
  • , Carlos Lezcano-Coba
  • , Robert B. Tesh
  • , Hilda Guzman
  • , Scott C. Weaver
  • , Zeuz Capitan-Barrios
  • , Anayansi Valderrama
  • , Rafael Samudio
  • , Amy Y. Vittor
  • , Nikos Vasilakis
  • , Lorenzo Cáceres Carrera
  • , Christl A. Donnelly
  • , Nuno R. Faria
  • , Jean Paul Carrera

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

Background: Understanding enzootic cycles is key to arbovirus control. Rodents are primary reservoirs of Venezuelan equine encephalitis virus (VEEV), whereas the vertebrate host of Madariaga virus (MADV) remains unknown. Culex (Melanoconion) mosquitoes are considered primary vectors. We studied small mammals and mosquito ecology in the Darién province and Panamá Oeste province, two enzootic regions of Panama. Additional alphavirus seroprevalence was assessed in small mammals. Methods: Small mammals were trapped using Sherman and Tomahawk traps, and blood samples were tested for MADV and VEEV neutralizing antibodies using plaque reduction neutralization test and attempt viral isolation and generic alphavirus RT-PCR from small mammal tissues. Mosquitoes were collected concurrently using Centers for Disease Control and Prevention (CDC) light, Trinidad, and resting traps. Diversity and similarity were analyzed using standard ecological indices. Results: We sampled 599 small mammals (16 species). MADV seroprevalence was highest in Los Pavitos (9.0%) and restricted to Darién; VEEV was more widespread, peaking in El Cacao (27.3%) and El Real (20.4%). Oryzomys couesi and Transandinomys bolivaris showed elevated MADV seroprevalence; T. bolivaris and Proechimys semispinosus had higher VEEV seroprevalence. Among 4118 mosquitoes, Coquillettidia venezuelensis was most abundant. El Real had the highest species richness and diversity. Geographic proximity influenced community similarity. Conclusions: Spatial differences in host and vector communities may reflect distinct transmission patterns of MADV and VEE. These findings could contribute to better understanding of alphavirus ecology and potentially inform public health strategies in endemic regions.

Original languageEnglish
Pages (from-to)749-760
Number of pages12
JournalVector-Borne and Zoonotic Diseases
Volume25
Issue number12
DOIs
StatePublished - Dec 2025

Bibliographical note

Publisher Copyright:
Copyright 2025, Mary Ann Liebert, (NY) LLC.

Funding

J.P.C. was supported by the Clarendon Scholarship from University of Oxford and Lincoln-Kingsgate Scholarship from Lincoln College, University of Oxford (grant number SFF1920_CB2_MPLS_1293647). J.F.G. is a masters student studying Epidemiological Research at Universidad Peruana Cayetano Heredia supported by training grant D43 TW007393 awarded by the Fogarty International Center of the U.S. National Institutes of Health. This work was supported by SENACYT (grant number FID-16-201 and FID23-147) grant to J.P.C. Proyecto: Estudio de las Enfermedades Emergentes y Síndromes Febriles en la Población Migrante, Ministerio de Economia y Finanzas de Panamá (Grant: 019911.013). Projecto de Caracterización del subtipo circulante de las Encefalitis equinas, Ministerio de Economia y Finanzas de Panamá (Grant: 9044-027) to L.C.C. This research was in part funded by the Centers for Research in Emerging Infectious Diseases “The Coordinating Research on Emerging Arboviral Threats Encompassing the Neotropics (CREATE-NEO)” grant 1U01AI151807 by the National Institutes of Health (NIH/USA) to N.V. C.A.D. acknowledges funding from the National Institute of Health Research for support of the Health Protection Research Unit in Emerging and Zoonotic Infections. W.M.S. was supported by the Global Virus Network fellowship and the NIH (AI12094) Global Virus Network fellowship, Burroughs Wellcome fund (#1022448), and Wellcome Trust-Digital Technology Development award (Climate Sensitive Infectious Disease Modelling [226075/Z/22Z]). N.R.F. acknowledges support from Wellcome Trust and Royal Society Sir Henry Dale Fellowship (204311/Z/16/Z), Bill and Melinda Gates Foundation (INV034540), and Medical Research Council-Sao Paulo Research Foundation (FAPESP) CADDE partnership award (MR/S0195/1 and FAPESP 18/14389-0). L.C. is member of the Sistema Nacional de Investigation (SNI), SENACYT, Panama. S.C.W. and W.M.S. were supported by NIH grant R24 AI120942.

FundersFunder number
Estudio de las Enfermedades Emergentes y Síndromes Febriles
U.S. Army
Wellcome Leap
National Institutes of Health (NIH)
Wellcome Trust
Fogarty International Center
Lincoln College, University of OxfordSFF1920_CB2_MPLS_1293647, D43 TW007393
Ministerio de Economia y Finanzas de Panamá019911.013
National Institute for Health and Care ResearchAI12094
Secretaria Nacional de Ciencia y TecnologíaFID23-147, FID-16-201
Fundação de Amparo à Pesquisa do Estado de São Paulo18/14389-0, MR/S0195/1, R24 AI120942
Centers for Research in Emerging Infectious Diseases1U01AI151807
Bill and Melinda Gates FoundationINV034540
Royal Society of Medicine204311/Z/16/Z
Burroughs Wellcome Fund1022448

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 3 - Good Health and Well-being
      SDG 3 Good Health and Well-being

    Keywords

    • MADV
    • Madariaga virus
    • VEEV
    • Venezuelan equine encephalitis virus
    • enzootic
    • mosquitoes

    ASJC Scopus subject areas

    • Microbiology
    • Infectious Diseases
    • Virology

    Fingerprint

    Dive into the research topics of 'Contrasting Ecological Patterns of Venezuelan Equine Encephalitis and Madariaga Viruses in Small Mammal and Mosquito Populations from Two Enzootic Regions of Panama'. Together they form a unique fingerprint.

    Cite this