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April 1, 2026Veterinary Research Communications0 citationsOpen Access

Case report: an atypical case of EBLV-1 infection in the long distance migrant bat Pipistrellus nathusii in mainland France

EMEvelyne Picard MeyerYBYannick BlanchardEREmmanuelle Robardet

Key Points

  • The primary aim is to report an atypical EBLV-1 infection case in the migratory bat Pipistrellus nathusii in France.
  • Reported an EBLV-1 infection case in a Pipistrellus nathusii bat.
  • Conducted fluorescent antibody test (FAT) and RT-PCR for detecting viral antigens and RNA.
  • Used next-generation sequencing to determine the complete genome sequence of EBLV-1.
  • Performed molecular clock dating and phylogenetic analysis to identify the virus variant.
  • The bat tested positive for EBLV-1 through FAT and molecular techniques.
  • Identified the virus as EBLV-1a with 99.88% nucleotide similarity to a German strain.
  • This case is the first of its kind reported in France involving a migratory bat species.

Abstract

Over the past five decades, nearly 1,500 bat rabies cases have been reported in Europe. The majority of positive cases (with 90% of cases) originated from Germany, followed by The Netherlands, Denmark, Poland, France and Spain. Among the seven lyssaviruses detected in European bats, three different recognized species are circulating in some native bat species in France: EBLV-1, BBLV, and LLEBV, primarily associated with the host species Eptesicus serotinus, Myotis nattereri, and Miniopterus schreibersii, respectively. In 2022, we reported an unusual case of EBLV-1 infection in a long-distance migrant bat species, Pipistrellus nathusii. The bat’s brain tested positive for the presence of viral antigens using the fluorescent antibody test (FAT) and for viral RNA through molecular techniques (including real-time and end-point pan-lyssavirus RT-PCR). In this study, we determined the nearly complete genome sequence of the virus using next-generation sequencing (PX733926). Molecular clock dating and phylogenetic analysis confirmed that the bat was infected with the EBLV-1a variant, the most common and widely distributed European bat lyssavirus. The virus genome showed 99.88% nucleotide similarity with a strain isolated from a serotine bat in the Lower Saxony region of Germany in 2016 (OU524432). This finding is the first of its kind in France and the third in Europe involving a long-distance migrant bat. It may partially explain the extensive geographic distribution of EBLV-1a across Europe, following both east-west and north-south axes.

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Cite This Study

Meyer et al. (2026) studied this question.

synapsesocial.com/papers/69ccb6ce16edfba7beb88837https://doi.org/10.1007/s11259-026-11166-8
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