Whole genome characteristics of hedgehog coronaviruses from Poland and analysis of the evolution of the Spike protein for its interspecies transmission potential.

Katarzyna Domanska-Blicharz1 Anna Lisowska2 Justyna Opolska2 Jakub J Ruszkowski3,4 Maciej Gogulski3,4 Małgorzata Pomorska-Mól5
Affiliations 5 institutions
  1. Department of Poultry Diseases, National Veterinary Research Institute, al. Partyzantów 57, Puławy, 24-100, Poland. [email protected].
  2. Department of Poultry Diseases, National Veterinary Research Institute, al. Partyzantów 57, Puławy, 24-100, Poland.
  3. Department of Animal Anatomy, University of Life Sciences in Poznań, ul. Wojska Polskiego 71C, Poznań, 60-625, Poland.
  4. University Centre for Veterinary Medicine, University of Life Sciences in Poznań, Szydłowska 43, Poznań, 60-656, Poland.
  5. Department of Preclinical Sciences and Infectious Diseases, University of Life Sciences in Poznań, ul. Wołyńska 35, Poznań, 60-637, Poland.

Abstract

The hedgehogs have been recently identified as possible reservoir of Middle East respiratory syndrome coronavirus like (MERS-CoV-like). These viruses were classified as a distinct Betacoronavirus erinacei (BCoV-Eri) species within the MerBCoV-Eriirus subgenus. As coronaviruses are known for their ability to jump between different hosts, including humans, this can pose a particular threat to people in direct contact with hedgehogs, such as those working at animal asylums. Our previous studies have shown the presence of BCoV-Eri strains in animals collected in the wildlife rehabilitation centre. This study aimed to investigate the presence of CoV in subsequent hedgehogs collected from the urban area of Poland and their molecular characteristics. Monitoring for the presence of coronavirus infection in hedgehogs revealed five positive individuals. The presence of BCoV-Eri was found in a total of 20% of animals tested. Our analyses revealed no correlation between CoVs positivity and animal health conditions but a higher probability of such infection in juveniles and females. The whole genome of two Polish Hedgehog coronavirus 1 strains were sequenced and compared with available counterparts from European and Asian countries. Phylogenetic analysis showed that both CoV strains formed common cluster with other similar MerBCoV-Eriirus, but they were also found to be genetically variable and most changes in the S protein were identified. Our analysis revealed that some S protein sites of the Hedgehog coronavirus 1 strains evolved under positive selection pressure and of five such sites, three are in the S1 region while the other two in the S2 region of the Spike. BCoV-Eri is to some extent prevalent in wildlife asylums in Poland. Given that the S protein of BCoVs-Eri is highly variable and that some sites of this protein evolve under positive selection pressure, these strains could potentially acquire a favourable feature for cross-species transmission. Consequently, the threat to humans working in such asylums is particularly high. Adequate biosecurity safeguards, but also human awareness of such risks, are therefore essential.

Supporting text Virus Host Location
Betacoronavirus 89 Hedgehog 3 Poland 9 S gene 1 Whole genome 1 Coronavirus Infections 171 Genome, Viral 317 Hedgehogs 6 Phylogeny 805 Spike Glycoprotein, Coronavirus 274 Animals 1948 Coronavirus 92 Evolution, Molecular 176 Female 289 Male 224 Poland 9

Evidence records

5 total
Zoonotic Surveillance
2 records · 2 evidence types
Evidence type
1 records
OVE8400
Key finding

BCoV-Eri coronavirus was detected in hedgehogs collected from the urban area of Poland, with 20% of animals testing positive.

Virus
Host
Location
Supporting text

This study aimed to investigate the presence of CoV in subsequent hedgehogs collected from the urban area of Poland and their molecular characteristics. Monitoring for the presence of coronavirus infection in hedgehogs revealed five positive individuals. The presence of BCoV-Eri was found in a total of 20% of animals tested.

Method
coronavirus monitoring
Sample type
hedgehog specimens
Geographic raw
Poland
Country inferred
POL
Evidence type
1 records
OVE8404
Key finding

BCoV-Eri was found to be prevalent among hedgehogs in wildlife asylums in Poland, suggesting an ecological maintenance of the virus within hedgehog populations.

Virus
Host
Location
Supporting text

BCoV-Eri is to some extent prevalent in wildlife asylums in Poland.

Method
monitoring for coronavirus infection in hedgehogs
Geographic raw
Poland | wildlife asylums
Country inferred
POL
Functional Mechanism
1 records · 1 evidence types
Evidence type
1 records
OVE8403
Key finding

Spike protein sites in Polish Hedgehog coronavirus 1 strains are under positive selection in both S1 and S2 regions, indicating molecular adaptation potentially linked to cross-species transmission.

Virus
Host
Not specified
Location
Not specified
Supporting text

Our analysis revealed that some S protein sites of the Hedgehog coronavirus 1 strains evolved under positive selection pressure and of five such sites, three are in the S1 region while the other two in the S2 region of the Spike.

Genes or proteins
S protein | Spike | S1 region | S2 region
Mechanism types
host-range expansion | receptor binding
Genomic Evolution
2 records · 1 evidence types
Evidence type
2 records
OVE8402
Key finding

Positive selection analysis identified five sites in the Spike protein of Hedgehog coronavirus 1 strains under selection, indicating adaptive evolution in S1 and S2 regions.

Virus
Host
Location
Not specified
Supporting text

Our analysis revealed that some S protein sites of the Hedgehog coronavirus 1 strains evolved under positive selection pressure and of five such sites, three are in the S1 region while the other two in the S2 region of the Spike.

Genes or proteins
S protein | S1 region | S2 region
Analysis methods
positive selection analysis
OVE8401
Key finding

Phylogenetic analysis placed two Polish Hedgehog coronavirus 1 genomes in the MerBCoV-Eriirus cluster, indicating relatedness but genetic variability within the group.

Virus
Host
Location
Not specified
Supporting text

Phylogenetic analysis showed that both CoV strains formed common cluster with other similar MerBCoV-Eriirus, but they were also found to be genetically variable and most changes in the S protein were identified.

Genes or proteins
S protein
Analysis methods
phylogenetic analysis