Livestock aggregated samples for monitoring viruses infecting animals and potentially zoonotic viral pathogens.

Marta Rusiñol1,2 Sandra Martínez-Puchol2 Diana Ribeiro1 Júlia Verdaguer1 Ona Torrejón-Llorens1 Marta Itarte1 Ignasi Estarlich-Landajo1,2,3 Cristina Mejías-Molina1,2 Gisela Juliachs-Torroella1,2,3 Rosina Girones1,2 Gustavo A Ramírez4 Jordi Baliellas5 Silvia Bofill-Mas1,2 Xavier Fernández-Cassi3,2
Affiliations 5 institutions
  1. Laboratory of Viruses Contaminants of Water and Food, Departament de Genètica. Microbiologia i Estadística, Universitat de Barcelona, Barcelona, Catalonia, Spain.
  2. Institut de Recerca de l'Aigua (IdRA), Universitat de Barcelona, Barcelona, Catalonia, Spain.
  3. Laboratory of Microorganisms of Interest in Food and Animal Safety, Departament de Biologia, Sanitat i Medi Ambient, Facultat de Farmàcia i Ciències de l'Alimentació, Universitat de Barcelona, Barcelona, Catalonia, Spain.
  4. Department of Animal Science (ETSEA), Universitat de Lleida-AGROTECNIO-CERCA Centre, Lleida, Catalonia, Spain.
  5. Grup de Sanejament Porcí (GSP), Lleida, Catalonia, Spain.

Abstract

Active surveillance of livestock pathogens is essential to prevent animal health losses and zoonotic spillover. This study evaluted aggregated environmental sampling as a non-invasive approach for monitoring swine- and cattle-associated viruses across farms and slaughterhouses, bridging the gap between agricultural biosecurity and public health. Over eleven months, 105 samples, including swine slurry, cattle manure, farm air, and slaughterhouse wastewater, were collected and analyzed using pathogen-specific (RT) qPCR and targeted viral metagenomics. Seasonal and sample patterns were evident, with higher detection of rotavirus A (RoV-A) and bovine coronavirus (BCoV) in slurry and wastewater during winter, and porcine reproductive and respiratory syndrome virus (PRRSV), porcine epidemic diarrhea virus (PEDV) and transmissible gastroenteritis virus (TGEV) sporadicly in slaughterhouse wastewater. Farm slurry or manure were optimal for enteric viruses such as RoV-A or hepatitis E virus (HEV), and farm air proved valuable for respiratory viruses like BCoV. Targeted sequencing identified a broader viral community, revealing up to 80% of total detected viral species in slaughterhouse wastewater alone. Frequent detection of porcine bocavirus, circoviruses and astrovirus, alongside zoonotic viruses such as HEV and porcine bufavirus (PBuV), underscored the environmental transmission risk at the human-animal interface. Sequencing also uncovered viruses of unclear pathogenicity, including kobuvirus and copiparvovirus, underscoring the complexity of the livestock virome and the potential for emerging viral threats. Slaughterhouse wastewater consistently captured the highest viral richness, integrating inputs from multiple farms and regions, while farm air samples yielded lower diversity but detected respiratory (astrovirus, caliciviruses) and persistent viruses (papillomaviruses, polyomaviruses). Aggregated sampling proved particularly efficient in swine systems, while cattle surveillance may require adapted strategies due to lower stocking densities and greater ventilation. This work demonstrates the novelty and value of aggregated environmental samples, collected at different points in the production chain, as strategic One Health sentinels. This scalable, practical approach supports early warning and control of animal and zoonotic diseases, directly contributing to One Health surveillance.

Supporting text Virus Host Location
Livestock viral pathogens 1 One Health 98 Viral fecal indicators 1 Wastewater surveillance 1 Zoonotic spillover 11

Evidence records

9 total
Zoonotic Surveillance
9 records · 1 evidence types
Evidence type
9 records
OVE10565
Key finding

Porcine reproductive and respiratory syndrome virus was sporadically detected in slaughterhouse wastewater samples.

Virus
Host
Not specified
Location
Supporting text

Seasonal and sample patterns were evident, with higher detection of rotavirus A (RoV-A) and bovine coronavirus (BCoV) in slurry and wastewater during winter, and porcine reproductive and respiratory syndrome virus (PRRSV), porcine epidemic diarrhea virus (PEDV) and transmissible gastroenteritis virus (TGEV) sporadicly in slaughterhouse wastewater.

Method
RT-qPCR | targeted viral metagenomics
Sample type
wastewater
Geographic raw
slaughterhouse wastewater
OVE10566
Key finding

Porcine epidemic diarrhea virus was sporadically detected in slaughterhouse wastewater samples.

Virus
Host
Not specified
Location
Supporting text

Seasonal and sample patterns were evident, with higher detection of rotavirus A (RoV-A) and bovine coronavirus (BCoV) in slurry and wastewater during winter, and porcine reproductive and respiratory syndrome virus (PRRSV), porcine epidemic diarrhea virus (PEDV) and transmissible gastroenteritis virus (TGEV) sporadicly in slaughterhouse wastewater.

Method
RT-qPCR | targeted viral metagenomics
Sample type
wastewater
Geographic raw
slaughterhouse wastewater
OVE10567
Key finding

Transmissible gastroenteritis virus was sporadically detected in slaughterhouse wastewater samples.

Virus
Host
Not specified
Location
Supporting text

Seasonal and sample patterns were evident, with higher detection of rotavirus A (RoV-A) and bovine coronavirus (BCoV) in slurry and wastewater during winter, and porcine reproductive and respiratory syndrome virus (PRRSV), porcine epidemic diarrhea virus (PEDV) and transmissible gastroenteritis virus (TGEV) sporadicly in slaughterhouse wastewater.

Method
RT-qPCR | targeted viral metagenomics
Sample type
wastewater
Geographic raw
slaughterhouse wastewater
OVE10570
Key finding

Porcine bocavirus, circoviruses, astrovirus, hepatitis E virus, and porcine bufavirus were frequently detected in environmental samples such as slaughterhouse wastewater.

Virus
Host
Not specified
Location
Supporting text

Frequent detection of porcine bocavirus, circoviruses and astrovirus, alongside zoonotic viruses such as HEV and porcine bufavirus (PBuV), underscored the environmental transmission risk at the human-animal interface.

Method
RT-qPCR | targeted viral metagenomics | sequencing
Sample type
wastewater | environmental samples
Geographic raw
environmental samples
OVE10563
Key finding

Rotavirus A was more frequently detected in slurry and wastewater samples during winter.

Virus
Host
Not specified
Location
Not specified
Supporting text

Seasonal and sample patterns were evident, with higher detection of rotavirus A (RoV-A) and bovine coronavirus (BCoV) in slurry and wastewater during winter.

Method
RT-qPCR | targeted viral metagenomics
Sample type
slurry | wastewater
OVE10564
Key finding

Bovine coronavirus was more frequently detected in slurry and wastewater samples during winter.

Virus
Host
Not specified
Location
Not specified
Supporting text

Seasonal and sample patterns were evident, with higher detection of rotavirus A (RoV-A) and bovine coronavirus (BCoV) in slurry and wastewater during winter.

Method
RT-qPCR | targeted viral metagenomics
Sample type
slurry | wastewater
OVE10568
Key finding

Farm slurry or manure were optimal for detecting enteric rotavirus A and hepatitis E virus.

Virus
Host
Not specified
Location
Supporting text

Farm slurry or manure were optimal for enteric viruses such as RoV-A or hepatitis E virus (HEV), and farm air proved valuable for respiratory viruses like BCoV.

Method
RT-qPCR | targeted viral metagenomics
Sample type
slurry | manure
Geographic raw
farm slurry | manure
OVE10569
Key finding

Farm air samples were valuable for detecting respiratory bovine coronavirus.

Virus
Host
Not specified
Location
Supporting text

Farm slurry or manure were optimal for enteric viruses such as RoV-A or hepatitis E virus (HEV), and farm air proved valuable for respiratory viruses like BCoV.

Method
RT-qPCR | targeted viral metagenomics
Sample type
air
Geographic raw
farm air
OVE10571
Key finding

Sequencing revealed kobuvirus and copiparvovirus in livestock-associated samples.

Virus
Host
Not specified
Location
Not specified
Supporting text

Sequencing also uncovered viruses of unclear pathogenicity, including kobuvirus and copiparvovirus, underscoring the complexity of the livestock virome and the potential for emerging viral threats.

Method
sequencing | targeted viral metagenomics
Sample type
livestock-associated samples