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Keywords = wildlife–livestock–human interface

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14 pages, 965 KB  
Article
Wild Boar and Red Deer as Key Players in Coxiella Burnetii Circulation in the Wildlife–Livestock–Human Interface: Serological Analysis Using a Gaussian Mixture Model
by Luis Barros, Sofia Anastácio, Ricardo Cabeças, Ana Carolina Abrantes, Gilberto Fernandes, Andreia Gil, Catarina Coelho and Madalena Vieira-Pinto
Animals 2026, 16(18), 2876; https://doi.org/10.3390/ani16182876 (registering DOI) - 12 Sep 2026
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 [...] Read more.
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. Full article
(This article belongs to the Special Issue Veterinary Epidemiology and Livestock Impact on Public Health)
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15 pages, 2490 KB  
Case Report
First Detection of the mcr-1 Gene in a Wild Red Fox (Vulpes vulpes), from a High-Density Livestock Area
by Miriam Tenuzzo, Federico Scali, Claudia Romeo, Flavia Guarneri, Lucia Cioli, Silvia Filippi, Chiara Boifava, Chiara Galizia, Laura Birbes, Giovanni Parisio, Valentina Carta, Marta Masserdotti, Antonio Marco Maisano, Giovanni Loris Alborali, Benedetta Cappelletti, Lisa Guardone and Nicoletta Formenti
Antibiotics 2026, 15(9), 858; https://doi.org/10.3390/antibiotics15090858 - 2 Sep 2026
Viewed by 236
Abstract
Background/Objectives: Antimicrobial resistance (AMR) can be influenced by the interconnection of human, animal and environmental compartments, making wildlife-based surveillance an important component of One Health surveillance. The red fox (Vulpes vulpes), due to its synanthropic behaviour and wide distribution, can be [...] Read more.
Background/Objectives: Antimicrobial resistance (AMR) can be influenced by the interconnection of human, animal and environmental compartments, making wildlife-based surveillance an important component of One Health surveillance. The red fox (Vulpes vulpes), due to its synanthropic behaviour and wide distribution, can be a valuable indicator of environmental AMR. Mobile colistin resistance (mcr) genes, which encode resistance to a highest-priority critically important antimicrobial (HPCIA), have never been identified in free-ranging foxes. Case presentation: A red fox faecal strain isolated using selective media was PCR-screened for major AMR genes, underwent antimicrobial susceptibility testing and whole-genome sequencing (WGS). This led to the identification of the first mcr-1-positive Escherichia coli from a wild red fox. The fox inhabited an area with a small human population but one of the highest cattle densities in Italy and high antimicrobial use (AMU), as established by comparing local livestock density and AMU with surrounding areas. Despite being borderline phenotypically susceptible to colistin, the isolate displayed resistance to other HPCIAs and antimicrobial classes commonly used in livestock. WGS revealed that mcr-1 was chromosomally integrated. Discussion: The study area showed near-zero colistin use in livestock alongside high overall AMU, suggesting that the mcr-1-positive isolate may have evolved through co-selection rather than direct colistin pressure. mcr-1 can persist and circulate in the environment, even where colistin use is minimal, and foxes may represent effective sentinels for tracking such events. Our results emphasise the importance of including wildlife in One Health surveillance frameworks to monitor AMR at the human–animal–environment interface. Full article
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29 pages, 3999 KB  
Article
Virulence and Invasion Profiles of Escherichia coli Across One Health Reservoirs: Genomic Insights into High-Risk Clones and Their Defense Systems
by Sandra Martínez-Álvarez, Soraya Herrera-Espejo, Myriam Zarazaga, Ursula Höfle, María Eugenia Pachón-Ibáñez and Carmen Torres
Pathogens 2026, 15(8), 812; https://doi.org/10.3390/pathogens15080812 - 1 Aug 2026
Viewed by 474
Abstract
Escherichia coli is a genetically diverse species encompassing both commensal and pathogenic lineages capable of transitioning among various hosts. Within a One Health framework, we conducted a targeted screening of 38 E. coli strains isolated from wildlife, livestock, and food reservoirs to characterize [...] Read more.
Escherichia coli is a genetically diverse species encompassing both commensal and pathogenic lineages capable of transitioning among various hosts. Within a One Health framework, we conducted a targeted screening of 38 E. coli strains isolated from wildlife, livestock, and food reservoirs to characterize their pathogenic potential by integrating genomic and phenotypic approaches. In vitro functional assays, including biofilm formation, surface motility, and adherence and invasion of HEK-293 epithelial cells, were statistically evaluated using the non-parametric Mann–Whitney U test. Phenotypic analyses revealed that extraintestinal pathogenic (ExPEC) and uropathogenic E. coli (UPEC) strains, particularly those belonging to the high-risk ST117 clone, exhibited significantly enhanced adherence and internalization capacities. These virulent phenotypes strongly correlated with specific genetic signatures involved in iron acquisition and epithelial invasion (chuA, fyuA, vat, and tia), underscoring that the convergence of ExPEC/UPEC determinants drives increased colonization potential. Genomic characterization further revealed that despite high virulence and widespread antimicrobial resistance, the CRISPR/Cas subtype I-E system was highly prevalent (93.8%), displaying structural variations frequently driven by insertion sequences. Spacer analyses identified limited homology to plasmids and phages, suggesting past mobilome interactions rather than active restriction of current horizontal gene transfer. Overall, these findings illustrate how phenotypic traits of high-risk clones match their genomic virulence platforms. The convergence of multidrug resistance and pathogenic fitness across human, animal, and environmental interfaces underscores the need for integrated molecular surveillance in a One Health context. Full article
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25 pages, 428 KB  
Review
The Wildlife–Livestock Interface as a Bidirectional Pathway for the Spread of ESBL-Producing Escherichia coli
by Margarita González-Martín, María Teresa Tejedor-Junco, Nerea C. Rosales-González and Juan Alberto Corbera
Animals 2026, 16(12), 1859; https://doi.org/10.3390/ani16121859 - 16 Jun 2026
Viewed by 440
Abstract
Antimicrobial resistance is a major global health challenge that requires a One Health approach integrating humans, animals, wildlife, food systems and the environment. Among resistant bacteria, extended-spectrum β-lactamase-producing Escherichia coli (ESBL-producing E. coli) is particularly relevant because it is widely distributed across [...] Read more.
Antimicrobial resistance is a major global health challenge that requires a One Health approach integrating humans, animals, wildlife, food systems and the environment. Among resistant bacteria, extended-spectrum β-lactamase-producing Escherichia coli (ESBL-producing E. coli) is particularly relevant because it is widely distributed across hosts and ecosystems, may carry mobile resistance genes and is commonly used as an indicator for antimicrobial resistance surveillance. This narrative review examines the occurrence, characteristics and transmission dynamics of ESBL-producing E. coli at the wildlife–livestock interface, with emphasis on its public health relevance and strategies for mitigation and control. The reviewed evidence indicates that livestock, wildlife and environmental matrices can be interconnected reservoirs of resistant E. coli and resistance genes. Transmission should not be interpreted as a simple linear process from livestock to wildlife or humans but rather as a bidirectional and ecological phenomenon shaped by antimicrobial use, farm management, biosecurity, wildlife ecology, environmental contamination and mobile genetic elements. Wildlife may function as a sentinel, reservoir or disperser of resistant bacteria, although detection alone does not demonstrate direct transmission. Integrated surveillance combining livestock, wildlife, food-chain and environmental sampling, supported by genomic analysis, is essential to clarify transmission pathways and guide effective control measures. Full article
(This article belongs to the Special Issue Bacterial Disease Research in Livestock and Poultry)
27 pages, 11238 KB  
Review
Targeting Zoonotic Spillover Drivers for Global Pandemic Prevention: A Narrative Review
by Alexandra Mpakosi, Vasileios Cholevas, Alexandra Lianou, Foteini Tziraki, Ioannis Vogiatzis, Stamatios Cholevas, Ioannis Tzouvelekis, Maria Mironidou-Tzouveleki, Konstantina A. Tsante, Deny Tsakri, Vasileios Petrakis, Petros Ioannou, Stefanos Bonovas, Rozeta Sokou and Andreas G. Tsantes
Microorganisms 2026, 14(6), 1316; https://doi.org/10.3390/microorganisms14061316 - 12 Jun 2026
Cited by 1 | Viewed by 1895
Abstract
Zoonoses account for the majority of recognized mammalian viral spillover events, primarily originating from bats, rodents, and primates. Human activities have significantly accelerated these transmissions. This narrative review synthesizes the evolutionary, ecological, pathogen-related, and anthropogenic drivers of viral zoonotic spillover to identify critical [...] Read more.
Zoonoses account for the majority of recognized mammalian viral spillover events, primarily originating from bats, rodents, and primates. Human activities have significantly accelerated these transmissions. This narrative review synthesizes the evolutionary, ecological, pathogen-related, and anthropogenic drivers of viral zoonotic spillover to identify critical leverage points for pandemic prevention. A narrative literature review was conducted. The analysis focused on factors enabling animal pathogens to transform into human pathogens, examining host species, pathogen traits, human–animal interactions, and environmental impacts. Pathogen transformation depends on host traits, contact frequency, and viral characteristics. Anthropogenic drivers—including livestock expansion, the bushmeat trade, wet markets, and the exotic pet industry—significantly elevate spillover risks. Effective pandemic prevention requires targeted interventions at the wildlife–livestock–human interfaces. A holistic, multidisciplinary collaboration between national governments and international organizations is essential to mitigate future risks. Full article
(This article belongs to the Special Issue Bats and Their Microbial Diversity)
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22 pages, 1741 KB  
Article
One Health Genomic Surveillance at Human–Animal Interfaces in Rural Ghana Reveals Underreported Viruses of Zoonotic and Economic Concern
by Julia E. Paoli, Nídia S. Trovão, Theophilus Odoom, Quaneeta Mohktar, Kwame Boamah Buabeng, Bright Adu, William Tasiame, Benita Anderson, Daniel Nana Yaw Tawiah-Yingar, Kuttichantran Subramaniam, Michael E. von Fricken, Gloria Ivy Mensah, Mario Mietzsch, Robert McKenna, Sherry Ama Mawuko Johnson and Carla N. Mavian
Viruses 2026, 18(6), 644; https://doi.org/10.3390/v18060644 - 3 Jun 2026
Viewed by 1612
Abstract
Under a One Health framework, viruses of veterinary and zoonotic importance pose significant threats to animal and human health, food security, and livelihoods, particularly in regions with intense human–animal interactions. In West Africa, despite recent advances in surveillance programs, important gaps remain in [...] Read more.
Under a One Health framework, viruses of veterinary and zoonotic importance pose significant threats to animal and human health, food security, and livelihoods, particularly in regions with intense human–animal interactions. In West Africa, despite recent advances in surveillance programs, important gaps remain in understanding viral diversity and cross-species transmission at wildlife–livestock interfaces. We conducted metagenomic surveillance to characterize viruses circulating across livestock, domestic animals, and wildlife in rural Ghana in 165 animals sampled across five regions. Viral RNA from serum and tissue samples was sequenced with the Illumina platform, and genomes were de novo assembled with MEGAHIT. Phylogenetic relationships were reconstructed using Bayesian approaches. We report the first genomic sequences of porcine parvovirus 3, canine parvovirus, rotavirus A genotype R16, and bovine hepacivirus subtype B from Ghana in over a decade. Phylogenetic analyses revealed intercontinental linkages between Africa and Europe for parvoviruses, persistence of hepacivirus lineages, and evidence of cross-species transmission for rotavirus. Notably, detection in apparently healthy animals highlights underrecognized circulation, gaps in vaccination effectiveness, trade-related biosecurity vulnerabilities, and the role of wildlife in viral maintenance and transmission. Our findings reveal dynamic viral diversity and connectivity across animal populations and ecological interfaces, emphasizing the fluid and interconnected nature of pathogen circulation within One Health systems. By integrating metagenomics and phylogenetics, this study provides a scalable framework for enhancing surveillance capacity, enabling the early detection of emerging threats and informing targeted strategies to mitigate zoonotic and economically important viral diseases in West Africa. Full article
(This article belongs to the Special Issue Controlling Zoonotic Viral Diseases from One Health Perspective 2026)
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13 pages, 5477 KB  
Article
Multi-Organ RNA Virome Profiling of Edible Rodents Reveals Potential Zoonotic Viral Exposure at the Wildlife–Livestock–Human Interface in Southwest China
by Dijun Chen, Jingzhu Zhou, Qing Ma, Xuexue Kong, Shijun Li, Qiyong Liu and Wenqin Liang
Pathogens 2026, 15(5), 558; https://doi.org/10.3390/pathogens15050558 - 21 May 2026
Viewed by 532
Abstract
The consumption of wild rodents in certain regions of Southwest China creates a potential interface for zoonotic pathogen exposure, yet the virome composition of edible rodents remains insufficiently characterized. In this study, we performed multi-organ RNA metatranscriptomic analysis of three commonly consumed rodent [...] Read more.
The consumption of wild rodents in certain regions of Southwest China creates a potential interface for zoonotic pathogen exposure, yet the virome composition of edible rodents remains insufficiently characterized. In this study, we performed multi-organ RNA metatranscriptomic analysis of three commonly consumed rodent species (Niviventer andersoni, Berylmys bowersi, and Rattus losea) collected from Guizhou Province, analyzing five visceral organs per species. A total of 1198 viral contigs spanning 37 viral families were identified, revealing diverse viral communities across host species and tissues, with host identity emerging as a key factor shaping virome structure. Sequences related to Seoul virus were detected in the lungs of R. losea, showing high similarity to previously reported strains, and sequences closely related to porcine Rotavirus A were identified in the lung samples of N. andersoni, indicating a close phylogenetic relationship with livestock-associated viruses. While these findings do not confirm active infection or transmission, they may reflect potential environmental exposure or ecological links at the wildlife–livestock interface. Overall, this study provides a baseline characterization of the multi-organ virome of edible rodents and highlights the importance of integrated surveillance and risk assessment within a One Health framework. Full article
(This article belongs to the Section Viral Pathogens)
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8 pages, 402 KB  
Opinion
Accelerating Progress on Ticks and Tick-Borne Diseases in Southeast Asia: Regional Challenges, Evidence Gaps, and Priorities (2023–2025)
by Benoit Malleret, Mackenzie L. Kwak and Jean-Marc Chavatte
Pathogens 2026, 15(5), 511; https://doi.org/10.3390/pathogens15050511 - 11 May 2026
Viewed by 917
Abstract
Southeast Asia (SEA) faces persistent gaps in regional understanding and control of ticks and tick-borne diseases (TBDs) despite recent advances (2023–2025). The second international symposium on ticks and TBDs in SEA (Singapore, August 2025), following the inaugural 2023 meeting in Cambodia, served as [...] Read more.
Southeast Asia (SEA) faces persistent gaps in regional understanding and control of ticks and tick-borne diseases (TBDs) despite recent advances (2023–2025). The second international symposium on ticks and TBDs in SEA (Singapore, August 2025), following the inaugural 2023 meeting in Cambodia, served as a catalyst for regional exchange that informed this perspective. SEA’s ecological and host diversity supports complex tick–host–pathogen networks, yet evidence remains fragmented due to uneven sampling that has largely focused on livestock and peri-urban environments. Key constraints include limited taxonomic resolution driven by outdated or incomplete identification keys, under-sampling of soft ticks (Argasidae), and the absence of harmonized, open-access regional reference resources (including DNA barcodes and MALDI-TOF MS spectral databases). While MALDI-TOF MS, proteomics, AI-assisted identification, and next-generation sequencing/metagenomics are increasingly applied, their broader regional uptake is limited by the absence of harmonized, open-access reference resources (including DNA barcodes and MALDI-TOF MS spectral databases). Broad ecological surveys and integrated animal and human surveillance remain limited, and vector competence studies are constrained by the scarcity of SEA-derived tick colonies and cell lines. Regional data and recent findings (2024–2026) confirm circulation of multiple TBPs (including Anaplasma, Babesia, Borrelia, Coxiella, Ehrlichia, Rickettsia, and Theileria) and highlight emerging viral findings, including southward reports of Bandavirus dabieense. Human infestations and non-communicable tick bite outcomes (e.g., tick paralysis and alpha-gal syndrome) are recognized but remain under-reported due to low clinical awareness and limited diagnostics. Importantly, the diagnostic chain is further disrupted by missed/insufficient specimen collection at the point of care, and by constrained capacity to identify (especially immature) ticks to species level—limitations compounded by the absence of harmonized, open-access regional reference resources. The symposium identified six priorities: (1) full completion and regional validation of tick identification keys for adults (in progress) and immatures (to be initiated), plus an open-access DNA barcode library anchored by curated, voucher-based collections from all SEA countries; (2) harmonization of molecular and proteomic diagnostic platforms, including expansion of regional MALDI-TOF MS and NGS protocols and reference databases; (3) development of tick colonies and cell lines from locally prevalent species to support vector competence, vaccine, and acaricide testing; (4) expansion of One Health surveillance with enhanced ecological sampling at wildlife–livestock–human interfaces; (5) establishment of open-access, region-wide data platforms for integrated tick, TBP, and ecological metadata sharing; and (6) sustained investment in human resources, training, and policy advocacy to raise research and public health visibility of ticks and TBDs. Full article
(This article belongs to the Special Issue Ticks and Tick-Borne Diseases in Southeast Asia)
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20 pages, 688 KB  
Review
Non-Tuberculous Mycobacteria at the Human–Animal–Environment Interface: Antimicrobial Resistance, Environmental Persistence and Cross-Species Exposure Risks
by Irena Reil, Silvio Špičić, Sanja Duvnjak, Maja Zdelar-Tuk, Šimun Naletilić, Gordan Kompes and Maja Dopuđ
Antibiotics 2026, 15(5), 467; https://doi.org/10.3390/antibiotics15050467 - 5 May 2026
Viewed by 959
Abstract
Background/Objectives: Non-tuberculous mycobacteria (NTM) are increasingly recognized as important opportunistic pathogens at the human–animal–environment interface. Their growing relevance is driven by increasing disease burden, environmental persistence, occurrence in multiple animal hosts and complex antimicrobial resistance (AMR) patterns. Unlike classical zoonotic pathogens, most NTM [...] Read more.
Background/Objectives: Non-tuberculous mycobacteria (NTM) are increasingly recognized as important opportunistic pathogens at the human–animal–environment interface. Their growing relevance is driven by increasing disease burden, environmental persistence, occurrence in multiple animal hosts and complex antimicrobial resistance (AMR) patterns. Unlike classical zoonotic pathogens, most NTM are primarily acquired from shared environmental reservoirs rather than through sustained host-to-host transmission. This review examines NTM from a One Health perspective, focusing on AMR, ecology, animal occurrence, cross-species exposure and public health relevance. Methods: A narrative review of the current literature was conducted to synthesize evidence on the ecology, environmental reservoirs, occurrence in animals, transmission patterns and AMR mechanisms of NTM. Particular attention was given to studies addressing the human–animal–environment interface and the implications of NTM for One Health surveillance and risk assessment. Results: The reviewed literature shows that NTM are widely distributed in water, soil, sediments and biofilms, creating repeated opportunities for exposure in both animals and humans. They have been reported in livestock, wildlife, companion animals, reptiles and aquatic organisms, where they may act as colonizers, opportunistic pathogens, or sources of diagnostic interference. Evidence for direct animal-to-human transmission remains limited, but animal and environmental findings are important for understanding ecological overlap, host range and circulation of resistant strains. AMR in NTM is shaped by intrinsic resistance, acquired mutations, efflux activity, and biofilm-associated tolerance, which together complicate treatment and resistance prediction. Conclusions: NTM should be considered environmentally maintained, multi-host organisms of increasing One Health importance rather than conventional zoonotic pathogens. Improved interdisciplinary surveillance, diagnostics and research are needed to clarify exposure pathways, resistance development and public health risk. Full article
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27 pages, 984 KB  
Review
Enteric Pathogens in Wild Boars Across the European Union: Prevalence and Antimicrobial Resistance Within a One Health Framework
by Francesca Piras, Giuliana Siddi, Enrico Pietro Luigi De Santis and Christian Scarano
Antibiotics 2025, 14(12), 1246; https://doi.org/10.3390/antibiotics14121246 - 10 Dec 2025
Cited by 2 | Viewed by 1184
Abstract
Wild boars, widely distributed across natural, agricultural, and urban landscapes, represent an ideal sentinel species for monitoring the emergence and spread of antimicrobial resistance (AMR) at the human–wildlife–livestock interface within the One Health framework. This review summarizes current knowledge on the prevalence, diversity, [...] Read more.
Wild boars, widely distributed across natural, agricultural, and urban landscapes, represent an ideal sentinel species for monitoring the emergence and spread of antimicrobial resistance (AMR) at the human–wildlife–livestock interface within the One Health framework. This review summarizes current knowledge on the prevalence, diversity, AMR, and epidemiological significance of major enteric pathogens isolated from wild boars in the European Union, with particular attention to their potential role in AMR dissemination. Numerous studies have reported variable prevalence rates for Salmonella spp., Yersinia enterocolitica, Shiga toxin-producing Escherichia coli (STEC), and Campylobacter spp. High prevalence rates has been observed in fecal samples—35% for Salmonella, 27% for Y. enterocolitica and STEC, and 66% for Campylobacter—highlighting the role of wild boars as carriers and the associated risk of carcass contamination during slaughter. Tonsils represent a key niche for Y. enterocolitica, with prevalence reaching 35%. Several studies have identified resistance to antimicrobials classified by the World Health Organization as critically important or high priority for human medicine, including fluoroquinolone-resistant non-typhoidal Salmonella spp. and third-generation cephalosporin-resistant Y. enterocolitica, raising notable public health concerns. Despite increasing interest, most available studies remain descriptive and geographically limited, providing limited insight into AMR acquisition and transmission pathways in wild boars. New approaches—such as resistome analyses and epidemiological cut-off values—offer added value to distinguish wild-type from acquired-resistant strains and to better understand AMR dissemination dynamics. Integrating wildlife into One Health surveillance systems is essential to capture the full complexity of AMR spread. Full article
(This article belongs to the Special Issue Antimicrobial Resistance in the Wildlife)
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10 pages, 813 KB  
Article
Endemic Circulation of Cluster 19 African Swine Fever Virus in Serbia and Bosnia and Herzegovina
by Dimitrije Glišić, Šejla Goletić Imamović, Sofija Šolaja, Ilma Terzić, Ajla Hodžić Borić, Teufik Goletić and Vesna Milicevic
Vet. Sci. 2025, 12(11), 1086; https://doi.org/10.3390/vetsci12111086 - 14 Nov 2025
Cited by 2 | Viewed by 1623
Abstract
African swine fever (ASF) is a highly fatal viral disease of domestic pigs and wild boar that continues to threaten pig production across Europe. Genotype II African swine fever virus (ASFV) has been present in Serbia since 2019 and was first confirmed in [...] Read more.
African swine fever (ASF) is a highly fatal viral disease of domestic pigs and wild boar that continues to threaten pig production across Europe. Genotype II African swine fever virus (ASFV) has been present in Serbia since 2019 and was first confirmed in Bosnia and Herzegovina in 2023, yet recent genetic data from the region have been lacking. This study aimed to update the genetic characterization of ASFV strains circulating in Serbia between 2023 and 2025 and to provide the first sequence data from Bosnia and Herzegovina. A total of 110 isolates were analyzed by partial sequencing of seven genomic regions recommended by the European Union Reference Laboratory. Good-quality sequences were obtained for at least two loci per isolate. All isolates belonged to genotype II and were classified as CVR variant I, IGR-II, O174L-I, MGF I, K145R-I, and ECO2-II, corresponding to cluster 19. No novel genetic changes were identified in the sequenced fragments. These findings indicate the stable, endemic circulation of cluster 19 in both domestic pigs and wild boar, maintained through ecological and human-mediated transmission at the wildlife–livestock interface. The detection of cluster 19 in Bosnia and Herzegovina underscores transboundary spread and highlights the need for continued molecular surveillance and regional cooperation. Full article
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17 pages, 10478 KB  
Article
Urban Edge Predators: Wolf Spatial and Temporal Ecology at the Wildland–Urban Interface in Mongolia
by Jeff Dolphin, Maria Vittoria Mazzamuto, Gantulga Gankhuyag, Delgerchimeg Davaasuren, Bayaraa Munkhtsog, Ulam-Urnukh Bayanmunkh, Gansukh Sukhchuluun and John L. Koprowski
Biology 2025, 14(9), 1292; https://doi.org/10.3390/biology14091292 - 18 Sep 2025
Viewed by 1644
Abstract
Mongolia’s rapidly expanding capital is encroaching on Bogd Khan Mountain, a UNESCO Biosphere Reserve and the oldest protected area in Eurasia. Gray wolves (Canis lupus) in this wildland–urban interface are locally near-threatened due to hunting, local beliefs, and human–wildlife conflict. In [...] Read more.
Mongolia’s rapidly expanding capital is encroaching on Bogd Khan Mountain, a UNESCO Biosphere Reserve and the oldest protected area in Eurasia. Gray wolves (Canis lupus) in this wildland–urban interface are locally near-threatened due to hunting, local beliefs, and human–wildlife conflict. In 2022 and 2023, we deployed 72 camera traps (11,539 trap nights) to investigate how wolves respond to overlapping pressures from free-ranging dogs, livestock, and human activity. Using a random habitat-stratified camera design and abundance modeling, we assessed diel activity and spatial co-occurrence. Wolves exhibited nocturnal and crepuscular activity, with the greatest temporal overlap with wild prey (wapiti: ∆4 = 0.73; Siberian roe deer: ∆4 = 0.79), moderate overlap with dogs (∆4 = 0.60) and horses (∆4 = 0.68), and minimal overlap with cattle (∆4 = 0.40) and people (∆4 = 0.43). Mean wolf abundance estimates ranged from λ = 0.91 (CI 95%, 0.05–1.77) in 2022 to λ = 1.52 (CI 95%, 0.44–3.53) in 2023. Wolves were more abundant at higher relative abundance of wild ungulates and in areas with more people. Wolves co-occurred with dogs at 11 sites and were more abundant in areas with a higher number of dogs. Our findings highlight the complex dynamics between wildlife, livestock, and human-associated disturbances at the wildland–urban interface, underscoring the need for integrated management strategies that address both ecological and human dimensions of conservation. Full article
(This article belongs to the Special Issue Biology, Ecology, Management and Conservation of Canidae)
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14 pages, 1646 KB  
Article
Feasibility of Oral Rabies Vaccination of Dogs in Mexico
by Verónica Gutiérrez Cedillo, Luis Antonio Montoya Mondragón, Jose Ramón Fernández Colín, Katharina Bobe, Ad Vos, Luis Armando Lecuona Olivares and Ruy López Ridaura
Trop. Med. Infect. Dis. 2025, 10(9), 244; https://doi.org/10.3390/tropicalmed10090244 - 28 Aug 2025
Cited by 5 | Viewed by 3148
Abstract
Mexico has not only successfully eliminated dog-mediated human rabies in recent years, but also the last rabies case in a dog infected with the canine variant of the rabies virus was reported in 2016. Mass dog vaccination campaigns were the cornerstone of these [...] Read more.
Mexico has not only successfully eliminated dog-mediated human rabies in recent years, but also the last rabies case in a dog infected with the canine variant of the rabies virus was reported in 2016. Mass dog vaccination campaigns were the cornerstone of these achievements. Unfortunately, the rabies virus still circulates in wildlife and, thus, spill-over infections in humans, livestock, and pets, including dogs, still occurs. Especially dogs that cohabit at interfaces shared with wildlife, like shepherd dogs, are at risk. These dogs are often free-roaming and difficult to restrain for vaccination purposes. Oral rabies vaccination (ORV) as an alternative vaccination strategy was tested in several rural villages in Querétaro State, Mexico. Bait acceptance and immunogenicity studies were conducted to test a licensed vaccine bait in terms of attractiveness and if the oral rabies vaccine strain, SPBN GASGAS, was able to induce an adequate immune response in local dogs, respectively. Although the egg(-flavored) bait was less well accepted (68.4%) by the dogs than the two other bait types included in the study, a bait made from boiled intestine segments (71.2%) and a bait with fish meal as an attractant (72.3%), dogs offered the egg bait were more often considered successfully vaccinated. 83.3% of the dogs offered an egg bait seroconverted during the immunogenicity study. Hence, ORV can be a suitable alternative by increasing the overall vaccination coverage of dogs that cannot be easily restrained and handled for vaccination. Full article
(This article belongs to the Special Issue Tackling Emerging Zoonotic Diseases with a One Health Approach)
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14 pages, 923 KB  
Article
Detection of Porcine Circovirus Type 3 in Free-Ranging Wild Boars and Ticks in Jiangsu Province, China
by Fanqi Sun, Meng Li, Yi Wang, Wangkun Cheng, Meirong Li, Changlin Deng, Xianwei Wang and Zhen Yang
Viruses 2025, 17(8), 1049; https://doi.org/10.3390/v17081049 - 28 Jul 2025
Cited by 1 | Viewed by 2561
Abstract
Porcine circovirus type 3 (PCV3) has been detected in wild boars across many countries in Europe, Asia, and South America. However, data regarding the presence of porcine circoviruses in wild boars and ticks remain limited. In this study, we investigated the presence and [...] Read more.
Porcine circovirus type 3 (PCV3) has been detected in wild boars across many countries in Europe, Asia, and South America. However, data regarding the presence of porcine circoviruses in wild boars and ticks remain limited. In this study, we investigated the presence and genetic characteristics of PCV3 in wild boars and parasitizing ticks in Jiangsu, China. Samples, including whole blood, serum, tissues, feces, and oral fluids from wild boars, as well as ticks collected from 47 wild boars, were obtained between March 2021 and November 2022. PCR results indicated that 34.0% (16/47) of wild boars tested positive for PCV3, while ELISA detected 41.9% (18/43) seropositivity. RT-qPCR results showed that 7.2% (6/83) were positive for PCV3 in 83 analyzed tick samples, with all positive samples identified as Amblyomma testudinarium. The PCV3 genome obtained from wild boars was classified as PCV3a and was closely related to the strain identified in domestic pigs in Nanjing, Jiangsu Province. Collectively, these findings confirm the presence of PCV3 in wild boars in Jiangsu and suggest a possible link of PCV3 infection among domestic pigs, wild boars, and ticks, providing new insights into the transmission risk of PCV3 at wildlife–livestock–human interfaces and highlighting the genetic homology between strains from wild and domestic pigs. Full article
(This article belongs to the Section Animal Viruses)
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13 pages, 1593 KB  
Article
Occurrence of Echinococcus felidis in Apex Predators and Warthogs in Tanzania: First Molecular Evidence of Leopards as a New, Definitive Host and Implications for Ecosystem Health
by Barakaeli Abdieli Ndossi, Eblate Ernest Mjingo, Mary Wokusima Zebedayo, Seongjun Choe, Hansol Park, Lee Dongmin, Keeseon S. Eom and Mohammed Mebarek Bia
Pathogens 2025, 14(5), 443; https://doi.org/10.3390/pathogens14050443 - 30 Apr 2025
Cited by 1 | Viewed by 1514
Abstract
(1) Background: Limited information on Echinococcus species among the wildlife in Tanzania has created a significant knowledge gap regarding their distribution, host range, and zoonotic potential. This study aimed to enhance the understanding of Echinococcus felidis transmission dynamics within the great Serengeti ecosystem. [...] Read more.
(1) Background: Limited information on Echinococcus species among the wildlife in Tanzania has created a significant knowledge gap regarding their distribution, host range, and zoonotic potential. This study aimed to enhance the understanding of Echinococcus felidis transmission dynamics within the great Serengeti ecosystem. (2) Methods: A total of 37 adult Echinococcus specimens were collected from a leopard (Panthera pardus) (n = 1) in Maswa Game Reserve and 7 from a lion (Panthera leo) (n = 1) in Loliondo. Two hydatid cysts were also obtained from warthogs (n = 2) in the Serengeti National Park. (3) Results: Morphological examination revealed infertile cysts in warthogs that were molecularly identified as E. felidis. This marks the first molecular evidence of E. felidis in leopards and warthogs in Tanzania. Pairwise similarity analysis showed 98.7%–99.5% identity between Tanzanian, Ugandan, and South African isolates. Thirteen unique haplotypes were identified, with a haplotype diversity of (Hd = 0.9485) indicating genetic variability. Phylogenetic analysis grouped E. felidis into a single lineage, with the leopard isolate forming a distinct haplotype, suggesting leopards as an emerging host. Lion and warthog isolates shared multiple mutational steps, suggesting possible genetic divergence. (4) Conclusions: This study confirms African lions and leopards as definitive hosts and warthogs as potential intermediate hosts of E. felidis in the Serengeti ecosystem. Our findings highlight disease spillover risks and stress the importance of ecosystem-based conservation in wildlife–livestock overlap areas. Although E. felidis is believed to be confined to wildlife, the proximity of infected animals to pastoralist communities raises concerns for spillover. These findings highlight the importance of ecosystem-based surveillance, especially in wildlife–livestock–human interface areas. Full article
(This article belongs to the Special Issue Zoonotic Cestodoses: Echinococcosis and Taeniosis)
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