Related Experiment Video
Updated: Sep 27, 2026

Generation and Multi-phenotypic High-content Screening of Coxiella burnetii Transposon Mutants
Published on: May 13, 2015
Wild Boar and Red Deer as Key Players in Coxiella Burnetii Circulation in the Wildlife-Livestock-Human Interface:
Luis Barros1, Sofia Anastácio2,3, Ricardo Cabeças2
1Department of the Environment for the Climate Change, Hygiene Service, Tondela City Hall, Largo da República nº16, 3460-532 Tondela, Portugal.
Abstract:
Coxiella burnetii, the etiological agent of Q fever, is a globally distributed zoonotic pathogen and a One Health priority. Despite increasing recognition of wildlife as potential reservoirs, data on C. burnetii circulation in European wild ungulates remain scarce. This study estimated exposure to C. burnetii in free-ranging wild boar (Sus scrofa) and red deer (Cervus elaphus) from two major hunting regions in east-central and northeastern Portugal and evaluated the performance of a commercial multi-species ELISA in these hosts. Between 2011 and 2021, 279 serum samples (162 wild boar; 117 red deer) from legally hunted animals in Portugal were tested using an indirect multi-species ELISA using an empirical species-specific threshold derived from a Gaussian mixture model. Overall seroprevalence was 6.8% (CI 95%; 3.4-11.8) in wild boar and 13.7% (CI 95%; 8.0-21.3) in red deer, with higher exposure in wild boar from Beira Baixa (east-central Portugal) than from Trás-os-Montes (northeastern Portugal). The manufacturer's ruminant cut-off classified almost no animals as seropositive (0.6% and 2.6%, respectively) and showed slight to fair agreement with the species-specific thresholds, underscoring the need for validated, wildlife-appropriate diagnostic criteria. These findings confirm exposure to C. burnetii in both species, suggesting their possible involvement in local maintenance of the pathogen at the wildlife-livestock-human interface. The results reinforce the value of integrating wildlife surveillance into national Q fever surveillance and control strategies to safeguard both public health and livestock production within a One Health context.
More Related Videos
10:29Applying Fluorescence Resonance Energy Transfer (FRET) to Examine Effector Translocation Efficiency by Coxiella burnetii during siRNA Silencing
Published on: July 6, 2016
10:17Cities As Interfaces of Zoonotic Hazard Emergence: Development of the New York City Tick and Wildlife Urban Surveillance System
Published on: March 10, 2026