Epidemiological surveillance and phylogenetic diversity of <i>Orthohantavirus hantanense</i> using high-fidelity nanopore sequencing, Republic of Korea

  • Park, Kyungmin; 
  • Kim, Jongwoo; 
  • Noh, Juyoung; 
  • Kim, Seong-Gyu; 
  • Cho, Hee-Kyung; 
  • ... Song, Jin-Won; 
  • 외 11명
Citations

WEB OF SCIENCE

5
Citations

SCOPUS

6

초록

Background Orthohantavirus hantanense (HTNV) poses a substantial global public health threat due to its role in causing hemorrhagic fever with renal syndrome (HFRS). HTNV outbreaks are particularly prevalent in the Gyeonggi and Gangwon Provinces of the Republic of Korea (ROK). This study aimed to evaluate the application of advanced nanopore sequencing and bioinformatics to generate complete genome sequences of HTNV, with the objective of accurately identifying infection sources and analyzing their genetic diversity.Methodology/Principal findings In 2022 and 2023, we collected 579 small mammals from 11 distinct locations across Gyeonggi and Gangwon Provinces, as well as in Gwangju Metropolitan City, ROK. Among these, 498 Apodemus agrarius specimens were subjected to an epidemiological survey to investigate HTNV infections. The serological and molecular positivity of HTNV were found to be 65/498 (13.1%) and 17/65 (26.2%), respectively. Furthermore, 15 whole-genome sequences of HTNV were obtained from rodents in Gyeonggi and Gangwon Provinces. We developed a novel amplicon-based nanopore sequencing approach to acquire high-fidelity and precise genomic sequences of HTNV. Genome exchange analysis revealed three reassortant candidates, including heterogeneous L segments, from Paju-si and Yeoncheon-gun in Gyeonggi Province.Conclusion/Significance Our findings enhance the resolution of the spatiotemporal genomic surveillance of HTNV by consistently providing new viral sequences and epidemiological data from HFRS-endemic regions in the ROK. This report signifies a notable advancement in nanopore sequencing techniques and bioinformatics, offering a robust platform for genome-based diagnostics and sophisticated phylogenetic analyses of orthohantaviruses, which are essential for public health strategies aimed at controlling HFRS.

키워드

Axio Scope; Bi 3730xl Dna Analyzer; Bigdye Terminator V3.1 Cycle Sequencing Kit; Guppy V.6.1.5; High Capacity Rna-to-cdna Kit; Megalign Software Lasergene V.5; Porechop V.9.0; Proflex Pcr System; Quantstudio 5 Flex Real-time Pcr System; Superscript Iv One-step Rt-pcr System; Sybr Green Pcr Master Mix; Apodemus Agrarius; Article; Cytb; Epidemiological Surveillance; Gene; Hemorrhagic Fever With Renal Syndrome; Nanopore Sequencing; Nonhuman; Orthohantavirus Hantanense; Phylogenetic Tree; Phylogeny; Polymerase Chain Reaction; Rna Extraction; South Korea; Virus; Whole Genome Sequencing; Animal; Classification; Epidemiological Monitoring; Epidemiology; Genetic Variation; Genetics; Hantavirus; Human; Isolation And Purification; Murine; Procedures; Virology; Virus Genome; Animals; Epidemiological Monitoring; Genetic Variation; Genome, Viral; Hemorrhagic Fever With Renal Syndrome; Humans; Murinae; Nanopore Sequencing; Orthohantavirus; Phylogeny; Republic Of Korea; Whole Genome Sequencing; PUUMALA-HANTAVIRUS; REASSORTMENT; RNA; TRANSMISSION; ORIGIN
제목
Epidemiological surveillance and phylogenetic diversity of <i>Orthohantavirus hantanense</i> using high-fidelity nanopore sequencing, Republic of Korea
저자
Park, Kyungmin; Kim, Jongwoo; Noh, Juyoung; Kim, Seong-Gyu; Cho, Hee-Kyung; Kim, Kijin; Seo, Ye-rin; Lim, Taehun; Lee, Seonghyeon; Lee, Jaeyeon; Lim, Seung In; Joo, Young Hoon; Lee, Buddle; Yun, Seok Hyeon; Park, Changbo; Kim, Won-Keun; Song, Jin-Won
DOI
10.1371/journal.pntd.0012859
발행일
2025-02
유형
Article
저널명
PLoS Neglected Tropical Diseases
권
19
호
2