Novel paramyxoviruses in free-ranging European bats.

Andreas Kurth1 Claudia Kohl Annika Brinkmann Arnt Ebinger Jennifer A Harper Lin-Fa Wang Kristin Mühldorfer Gudrun Wibbelt
Affiliations 1 institutions
  1. Robert Koch Institute, Centre for Biological Security, Berlin, Germany. [email protected]

Abstract

The zoonotic potential of paramyxoviruses is particularly demonstrated by their broad host range like the highly pathogenic Hendra and Nipah viruses originating from bats. But while so far all bat-borne paramyxoviruses have been identified in fruit bats across Africa, Australia, South America, and Asia, we describe the detection and characterization of the first paramyxoviruses in free-ranging European bats. Moreover, we examined the possible impact of paramyxovirus infection on individual animals by comparing histo-pathological findings and virological results. Organs from deceased insectivorous bats of various species were sampled in Germany and tested for paramyxovirus RNA in parallel to a histo-pathological examination. Nucleic acids of three novel paramyxoviruses were detected, two viruses in phylogenetic relationship to the recently proposed genus Jeilongvirus and one closely related to the genus Rubulavirus. Two infected animals revealed subclinical pathological changes within their kidneys, suggestive of a similar pathogenesis as the one described in fruit bats experimentally infected with Hendra virus.Our findings indicate the presence of bat-born paramyxoviruses in geographic areas free of fruit bat species and therefore emphasize a possible virus-host co-evolution in European bats. Since these novel viruses are related to the very distinct genera Rubulavirus and Jeilongvirus, a similarly broad genetic diversity among paramyxoviruses in other Microchiroptera compared to Megachiroptera can be assumed. Given that the infected bats were either found in close proximity to heavily populated human habitation or areas of intensive agricultural use, a potential risk of the emergence of zoonotic paramyxoviruses in Europe needs to be considered.

Supporting text Virus Host Location
Animals 1948 Chiroptera 371 Disease Reservoirs 149 DNA Primers 9 Europe 27 Genetic Variation 127 Germany 20 Hendra Virus 39 Humans 1440 Kidney 8 Models, Genetic 6 Paramyxovirinae 14 Phylogeny 805 Polymerase Chain Reaction 38 RNA, Viral 193 Species Specificity 84

Evidence records

4 total
Zoonotic Surveillance
4 records · 2 evidence types
Evidence type
3 records
OVE1230
Key finding

Paramyxovirus RNA was detected in organs from deceased insectivorous bats sampled in Germany.

Virus
Host
Location
Supporting text

Organs from deceased insectivorous bats of various species were sampled in Germany and tested for paramyxovirus RNA in parallel to a histo-pathological examination.

Method
RNA detection | histo-pathological examination
Sample type
organs
Geographic raw
Germany
Country inferred
DEU
OVE1231
Key finding

RNA of two novel Jeilongvirus-related paramyxoviruses was detected in organs from deceased insectivorous bats in Germany.

Virus
Host
Location
Supporting text

Organs from deceased insectivorous bats of various species were sampled in Germany and tested for paramyxovirus RNA in parallel to a histo-pathological examination. Nucleic acids of three novel paramyxoviruses were detected, two viruses in phylogenetic relationship to the recently proposed genus Jeilongvirus.

Method
RNA detection | phylogenetic analysis
Sample type
organs
Geographic raw
Germany
Country inferred
DEU
OVE1232
Key finding

RNA of a Rubulavirus-related paramyxovirus was detected in organs from deceased insectivorous bats in Germany.

Virus
Host
Location
Supporting text

Organs from deceased insectivorous bats of various species were sampled in Germany and tested for paramyxovirus RNA in parallel to a histo-pathological examination. Nucleic acids of three novel paramyxoviruses were detected, one closely related to the genus Rubulavirus.

Method
RNA detection | phylogenetic analysis
Sample type
organs
Geographic raw
Germany
Country inferred
DEU
Evidence type
1 records
OVE1234
Key finding

Bat-borne paramyxoviruses were detected in European bats in regions lacking fruit bats, suggesting long-term virus–host co‑evolution among insectivorous bats.

Virus
Host
Location
Supporting text

Our findings indicate the presence of bat-born paramyxoviruses in geographic areas free of fruit bat species and therefore emphasize a possible virus-host co-evolution in European bats.

Method
RNA detection | phylogenetic analysis | histopathological examination
Sample type
organs from deceased bats
Geographic raw
Europe