Viruses
2022, 14(7), 1562; https://doi.org/10.3390/v14071562
Shu-Chia Hu 1,Chao-Lung Hsu 2,Fan Lee 1,Yang-Chang Tu 1,Yen-Wen Chen 1,Jen-Chieh Chang 1 and Wei-Cheng Hsu 1,*
Animal Health Research Institute, New Taipei City 251203, Taiwan
Bat Conservation Society of Taipei, Taipei City 106056, Taiwan
Bat lyssaviruses were identified in Taiwan’s bat population during 2016–2017. The lyssavirus surveillance system was continuously conducted to understand the epidemiology. Through this system, the found dead bats were collected for lyssavirus detection by direct fluorescent antibody test and reverse transcription polymerase chain reaction. Three bats were identified as positive during 2018–2021. A novel lyssavirus, designated as Taiwan bat lyssavirus 2, was detected in a Nyctalus plancyi velutinus. This lyssavirus had less than 80% nucleotide identity in the nucleoprotein (N) gene with other lyssavirus species, forming a separate branch in the phylogenetic analysis. The other two cases were identified in Pipistrellus abramus (Japanese pipistrelles); they were identified to be similar to the former lyssavirus identified in 2016–2017, which was renominated as Taiwan bat lyssavirus 1 (TWBLV-1) in this study. Even though one of the TWBLV-1 isolates showed high genetic diversity in the N gene compared with other TWBLV-1 isolates, it may be a TWBLV-1 variant but not a new species based on its high amino acid identities in the nucleoprotein, same host species, and same geographic location as the other TWBLV-1.
Keywords: lyssavirus; bat; Taiwan; Nyctalus plancyi velutinus; Pipistrellus abramus
J Vis Exp
2019 Aug 27:(150). doi: 10.3791/59421.
Wei-Cheng Hsu 1, Chao-Lung Hsu 2, Yang-Chang Tu 1, Jen-Chieh Chang 1, Kwok-Rong Tsai 1, Fan Lee 1, Shu-Chia Hu 3
1. Animal Health Research Institute, Council of Agriculture, Executive Yuan.
2. Institute of Ecology and Evolutionary Biology, National Taiwan University; Bat Conservation Society of Taipei.
3. Animal Health Research Institute, Council of Agriculture, Executive Yuan;
PMID: 31524862
DOI: 10.3791/59421
Viruses within the genus Lyssavirus are zoonotic pathogens, and at least seven lyssavirus species are associated with human cases. Because bats are natural reservoirs of most lyssaviruses, a lyssavirus surveillance program of bats has been conducted in Taiwan since 2008 to understand the ecology of these viruses in bats. In this program, non-governmental bat conservation organizations and local animal disease control centers cooperated to collect dead bats or bats dying of weakness or illness. Brain tissues of bats were obtained through necropsy and subjected to direct fluorescent antibody test (FAT) and reverse transcription polymerase chain reaction (RT-PCR) for detection of lyssavirus antigens and nucleic acids. For the FAT, at least two different rabies diagnosis conjugates are recommended. For the RT-PCR, two sets of primers (JW12/N165-146, N113F/N304R) are used to amplify a partial sequence of the lyssavirus nucleoprotein gene. This surveillance program monitors lyssaviruses and other zoonotic agents in bats. Taiwan bat lyssavirus is found in two cases of the Japanese pipistrelle (Pipistrellus abramus) in 2016-2017. These findings should inform the public, health professionals, and scientists of the potential risks of contacting bats and other wildlife.
Emerg Infect Dis
2018 Apr;24(4):782-785. doi: 10.3201/eid2404.171696.
Shu-Chia Hu, Chao-Lung Hsu, Ming-Shiuh Lee, Yang-Chang Tu, Jen-Chieh Chang, Chieh-Hao Wu, Shu-Hwae Lee, Lu-Jen Ting, Kwok-Rong Tsai, Ming-Chu Cheng, Wen-Jane Tu, Wei-Cheng Hsu
PMID: 29553328
PMCID: PMC5875257
A putative new lyssavirus was found in 2 Japanese pipistrelles (Pipistrellus abramus) in Taiwan in 2016 and 2017. The concatenated coding regions of the virus showed 62.9%-75.1% nucleotide identities to the other 16 species of lyssavirus, suggesting that it may be representative of a new species of this virus.
Keywords: Japanese pipistrelle; Pipistrellus abramus; Taiwan; bat; lyssavirus; viruses.