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Molecular detection of coronavirus, hepatitis E virus, and hantavirus in wildlife farming systems in Vietnam
Uppsala University, Disciplinary Domain of Medicine and Pharmacy, Faculty of Medicine, Department of Medical Biochemistry and Microbiology, Infection and Immunity. (Zoonosis Science Centre)ORCID iD: 0009-0001-6653-2398
Uppsala University, Disciplinary Domain of Medicine and Pharmacy, Faculty of Medicine, Department of Medical Biochemistry and Microbiology, Infection and Immunity. Swedish Veterinary Agency. (Zoonosis Science Centre)ORCID iD: 0000-0002-1175-0398
Uppsala University, Disciplinary Domain of Medicine and Pharmacy, Faculty of Medicine, Department of Medical Sciences, Clinical Microbiology. Uppsala University, Disciplinary Domain of Medicine and Pharmacy, Faculty of Medicine, Department of Medical Biochemistry and Microbiology, Infection and Immunity. (Zoonosis Science Centre)ORCID iD: 0000-0001-8608-6551
Uppsala University, Disciplinary Domain of Medicine and Pharmacy, Faculty of Medicine, Department of Medical Biochemistry and Microbiology, Infection and Immunity. (Zoonosis Science Centre)ORCID iD: 0000-0002-3043-6791
(English)Manuscript (preprint) (Other academic)
Abstract [en]

Wildlife farming poses an important risk for zoonotic diseases. Yet, the extent of virus circulation in this context remains underexplored, particularly in Vietnam, where wildlife farming is common. This study investigates the prevalence of active coronavirus (CoV), hepatitis E virus (HEV), and hantavirus infections among selected wildlife species and farmers, as well as risk factors. A cross-sectional study was conducted from August 2023 to June 2024 in Lao Cai and Dong Nai provinces. Oral swabs and faecal samples were collected from bats, civets, wild boars, and bamboo rats, and nasal swabs were obtained from farm owners/workers. Samples were screened for CoV, HEV, and hantaviruses using nested RT-PCR protocols. Positive amplicons were sequenced, and phylogenetic analyses were performed using global reference strains. Multivariable logistic regression was used to assess factors associated with PCR positivity. Of 775 samples tested for CoV, 12 samples were positive (1.5%; 95% confidence interval (CI): 0.8 – 2.8), including six human and six animal samples. Human-derived sequences belonged to the Betacoronavirus genus, including three HCoV-OC43, two SARS-CoV-2, and one HCoV-HKU1 infection. We detected three CoVs within Gammacoronavirus genus in wild boars, one bat CoV and one porcine CoV clustering within the Alphacoronavirus genus from two bats, and one SARS-CoV-2 in a civet. HEV RNA was detected in six of 436 samples (1.4%; 95% CI: 0.6 – 3.1), all from wild boars, and classified as HEV genotype 3d or 4b. No hantavirus RNA was detected. Higher preventive practice scores were significantly associated with reduced odds of PCR positivity (OR = 0.9; 95% CI: 0.8 – 0.99). This study provides molecular evidence of CoV and HEV circulation at wildlife farms in Vietnam. These findings highlight the importance of improving on-farm biosecurity and hygiene practices to reduce pathogen circulation and mitigate the risk of zoonotic spillover in wildlife farming systems.

Keywords [en]
wildlife farming, coronavirus, hepatitis E virus, hantavirus, molecular detection, phylogenetic analysis
National Category
Infectious Medicine
Research subject
Medical Science
Identifiers
URN: urn:nbn:se:uu:diva-582545OAI: oai:DiVA.org:uu-582545DiVA, id: diva2:2046906
Available from: 2026-03-18 Created: 2026-03-18 Last updated: 2026-05-22
In thesis
1. Zoonotic risks in wildlife farming systems in Vietnam: An assessment using a One Health approach
Open this publication in new window or tab >>Zoonotic risks in wildlife farming systems in Vietnam: An assessment using a One Health approach
2026 (English)Doctoral thesis, comprehensive summary (Other academic)
Abstract [en]

Zoonoses originating from wildlife pose increasing threats to global health, particularly in biodiversity-rich regions like Southeast Asia. In Vietnam, wildlife farming is a growing economic sector, yet its role in facilitating interspecies transmission of zoonotic pathogens remains underexplored. This PhD project applied a One Health approach to assess zoonotic transmission risks in wildlife farming systems in Vietnam to inform risk-based surveillance and targeted prevention strategies. The thesis comprises the following studies: (1) a systematic review of zoonotic pathogens from wildlife in Southeast Asia; (2) field studies in two provinces in Vietnam, including an assessment of wildlife farmers’ knowledge, attitudes, and practices (KAP); serological testing and risk factor analyses among farmers; molecular detection of coronavirus (CoV), hantavirus and hepatitis E virus (HEV) in wildlife and human samples; and (3) a qualitative risk assessment of transmission at the high-risk node along the wildlife supply chain. Findings from 108 reviewed publications highlight diverse zoonotic pathogens from wildlife in Southeast Asia, with transmission driven by interconnected environmental, animal, human, and human-animal-environment interface factors. Among 210 wildlife farmers, KAP results showed high knowledge scores (mean 10.1/13), positive attitudes (41.3/50), but moderate preventive practice (14.1/30). Qualitative findings revealed a gap between farmers’ knowledge and practices, driven by low-risk perception, mistrust of authorities, and concerns about reporting consequences. Serological analysis identified 8.7% hantavirus IgG, 1.9% IgM, and 26.7% HEV IgG among farmers. Risk factor analyses showed that hantavirus exposure was associated with exclusive wildlife farming (OR = 2.7; 95% CI: 1.1 – 6.9), while HEV exposure was linked to male gender (OR = 3.1; 95% CI: 1.4 – 7.3), raw wild meat consumption (OR = 6.8; 95% CI: 1.6 – 31.8), and reported use of protective clothing (OR = 4.0, 95% CI: 1.4 – 11.2), however the correctness of its use were not evaluated. Molecular testing detected diverse CoVs and HEV in both wildlife and human samples, including porcine, bat, avian CoVs, SARS-CoV-2 from wildlife samples; HCoV-HKU1, -OC43, SARS-CoV-2 from human samples, and HEV genotypes 3 and 4 in wild boar faeces, with some detected on the same farms. Higher practice scores were associated with lower PCR positivity (OR = 0.9; 95% CI: 0.8 – 0.99). Risk assessment identified wildlife farms as the highest-risk node due to frequent human-wildlife contact, high density, poor biosecurity, and mixed-species rearing. Specifically, at the farm level, CoV posed a low risk to animals and low-to-high risk to humans, hantavirus posed a low risk to both animals and humans, and HEV posed a low risk to animals but medium risk to humans. Overall, this thesis provides evidence and insights to inform zoonotic disease prevention and supports operationalizing One Health strategies to reduce zoonotic transmission risks in wildlife farming settings.

Place, publisher, year, edition, pages
Uppsala: Acta Universitatis Upsaliensis, 2026. p. 68
Series
Digital Comprehensive Summaries of Uppsala Dissertations from the Faculty of Medicine, ISSN 1651-6206 ; 2252
Keywords
wildlife farming, zoonotic diseases, transmission risk, Vietnam, One Health.
National Category
Health Sciences
Research subject
Medical Science
Identifiers
urn:nbn:se:uu:diva-582866 (URN)978-91-513-2784-6 (ISBN)
Public defence
2026-05-22, A1:107a, BMC, Husargatan 3, Uppsala, 12:00 (English)
Opponent
Supervisors
Available from: 2026-04-29 Created: 2026-03-23 Last updated: 2026-04-29

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Nguyen, Ha Thi ThanhLindahl, Johanna F.Lundkvist, ÅkeLing, Jiaxin

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