Genomic characterization and cross-species transmission potential of hedgehog coronavirus.

Andreia V S Cruz1 Sérgio Santos-Silva1 Luís Queirós-Reis1 Clarisse Rodrigues2 Vanessa Soeiro3 Rachael E Tarlinton4 João R Mesquita1,5,6
Affiliations 6 institutions
  1. Instituto de Ciências Biomédicas Abel Salazar (ICBAS), Universidade do Porto, 4050-313 Porto, Portugal.
  2. Centro de Recuperação e Interpretação do Ouriço, 4470-372 Maia, Portugal.
  3. Centro de Recuperação de Fauna do Parque Biológico de Gaia, 4430-812 Vila Nova de Gaia, Portugal.
  4. School of Veterinary Medicine and Science, University of Nottingham, Sutton Bonington Campus, Loughborough LE12 5RD, United Kingdom.
  5. Epidemiology Research Unit (EPIUnit), Instituto de Saúde Pública da Universidade do Porto, 4050-600 Porto, Portugal.
  6. Laboratório para a Investigação Integrativa e Translacional em Saúde Populacional (ITR), 4050-600 Porto, Portugal.

Abstract

In the 21st century, three betacoronaviruses (SARS-CoV, MERS-CoV and SARS-CoV-2) have emerged in humans worldwide as a result of animal spillover, causing severe respiratory infections and resulting in more than seven million deaths. In 2013, a novel Betacoronavirus closely related to MERS-CoV (Betacoronavirus cameli) was discovered in European hedgehogs (Erinaceus europaeus), raising questions on the possibility of hedgehog-to-human transmission. Hence, the present study aimed to investigate and characterize the presence and genetic diversity of coronaviruses in hedgehogs from Portugal, as well as their potential for cross-species transmission. To achieve this, fecal samples from 110 hedgehogs at two recovery centers and one environmental non-governmental organization were tested for coronaviruses using a broad-spectrum nested RT-PCR assay targeting the RdRp gene. Of these samples, 24.5 % tested positive, most belonging to the Betacoronavirus genus. However, the present study also reports, for the first time, Alphacoronaviruses in hedgehogs, showing 100 % identity with a Bat coronavirus (a variant of Alphacoronavirus miniopteri). The genome sequencing of one betacoronavirus-positive sample yielded 65 % of a full-length genome, with the closest homology (93.5 %) to Betacoronavirus erinacei from the United Kingdom. Computational protein-protein docking studies predicted the binding affinity between the spike protein of hedgehog coronavirus and cell receptors of mammal species that interact with hedgehogs. The results obtained raise the question of whether hedgehog CoV uses the same receptor as MERS-CoV or a different receptor to enter host cells. Thus, this study enhances our understanding of the epidemiology of coronaviruses, emphasizing the need for further investigation into cross-species transmission risks.

Supporting text Virus Host Location
Coronavirus 195 Erinaceus coronavirus 2 Hedgehogs 8 Portugal 8 Public health 37

Evidence records

3 total
Zoonotic Surveillance
2 records · 1 evidence types
Evidence type
2 records
OVE8670
Key finding

Betacoronavirus RNA was detected in fecal samples from hedgehogs in Portugal using nested RT-PCR targeting the RdRp gene, with 24.5% of samples testing positive.

Virus
Host
Location
Supporting text

Fecal samples from 110 hedgehogs at two recovery centers and one environmental non-governmental organization were tested for coronaviruses using a broad-spectrum nested RT-PCR assay targeting the RdRp gene. Of these samples, 24.5 % tested positive, most belonging to the Betacoronavirus genus.

Method
nested RT-PCR targeting the RdRp gene
Sample type
fecal samples
Geographic raw
Portugal
Country inferred
PRT
OVE8671
Key finding

Alphacoronavirus RNA identical to Bat coronavirus (Alphacoronavirus miniopteri) was detected in hedgehogs in Portugal.

Virus
Host
Location
Supporting text

The present study also reports, for the first time, Alphacoronaviruses in hedgehogs, showing 100 % identity with a Bat coronavirus (a variant of Alphacoronavirus miniopteri).

Method
nested RT-PCR targeting the RdRp gene | sequence identity analysis
Sample type
fecal samples
Geographic raw
Portugal
Country inferred
PRT
Functional Mechanism
1 records · 1 evidence types
Evidence type
1 records
OVE8674
Key finding

Computational docking predicted that hedgehog coronavirus spike protein could interact with cell receptors of other mammal species that interact with hedgehogs, suggesting potential cross-species transmission.

Virus
Host
Location
Not specified
Supporting text

Computational protein-protein docking studies predicted the binding affinity between the spike protein of hedgehog coronavirus and cell receptors of mammal species that interact with hedgehogs.

Method
protein-protein docking | genome sequencing | nested RT-PCR
Receptors
cell receptors