Cargando…

Whole-genome sequencing and genetic diversity of severe fever with thrombocytopenia syndrome virus using multiplex PCR-based nanopore sequencing, Republic of Korea

BACKGROUND: Whole-genome sequencing plays a critical role in the genomic epidemiology intended to improve understanding the spread of emerging viruses. Dabie bandavirus, causing severe fever with thrombocytopenia syndrome (SFTS), is a zoonotic tick-borne virus that poses a significant public health...

Descripción completa

Detalles Bibliográficos
Autores principales: Lee, Jingyeong, Park, Kyungmin, Kim, Jongwoo, Lee, Seung-Ho, Lee, Geum-Young, Cho, Seungchan, Kim, Heung-Chul, Klein, Terry A., Kim, Jeong-Ah, Choi, Jeewan, Park, Juwan, Song, Dong-Hyun, Gu, Se Hun, Yun, Hyeongseok, Kim, Jung-Eun, Lee, Daesang, Hur, Gyeung Haeng, Jeong, Seong Tae, Hwang, Il-Ung, Kim, Won-Keun, Song, Jin-Won
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9499217/
https://www.ncbi.nlm.nih.gov/pubmed/36094957
http://dx.doi.org/10.1371/journal.pntd.0010763
_version_ 1784794942268243968
author Lee, Jingyeong
Park, Kyungmin
Kim, Jongwoo
Lee, Seung-Ho
Lee, Geum-Young
Cho, Seungchan
Kim, Heung-Chul
Klein, Terry A.
Kim, Jeong-Ah
Choi, Jeewan
Park, Juwan
Song, Dong-Hyun
Gu, Se Hun
Yun, Hyeongseok
Kim, Jung-Eun
Lee, Daesang
Hur, Gyeung Haeng
Jeong, Seong Tae
Hwang, Il-Ung
Kim, Won-Keun
Song, Jin-Won
author_facet Lee, Jingyeong
Park, Kyungmin
Kim, Jongwoo
Lee, Seung-Ho
Lee, Geum-Young
Cho, Seungchan
Kim, Heung-Chul
Klein, Terry A.
Kim, Jeong-Ah
Choi, Jeewan
Park, Juwan
Song, Dong-Hyun
Gu, Se Hun
Yun, Hyeongseok
Kim, Jung-Eun
Lee, Daesang
Hur, Gyeung Haeng
Jeong, Seong Tae
Hwang, Il-Ung
Kim, Won-Keun
Song, Jin-Won
author_sort Lee, Jingyeong
collection PubMed
description BACKGROUND: Whole-genome sequencing plays a critical role in the genomic epidemiology intended to improve understanding the spread of emerging viruses. Dabie bandavirus, causing severe fever with thrombocytopenia syndrome (SFTS), is a zoonotic tick-borne virus that poses a significant public health threat. We aimed to evaluate a novel amplicon-based nanopore sequencing tool to obtain whole-genome sequences of Dabie bandavirus, also known as SFTS virus (SFTSV), and investigate the molecular prevalence in wild ticks, Republic of Korea (ROK). PRINCIPAL FINDINGS: A total of 6,593 ticks were collected from Gyeonggi and Gangwon Provinces, ROK in 2019 and 2020. Quantitative polymerase chain reaction revealed the presence of SFSTV RNA in three Haemaphysalis longicornis ticks. Two SFTSV strains were isolated from H. longicornis captured from Pocheon and Cheorwon. Multiplex polymerase chain reaction-based nanopore sequencing provided nearly full-length tripartite genome sequences of SFTSV within one hour running. Phylogenetic and reassortment analyses were performed to infer evolutionary relationships among SFTSVs. Phylogenetic analysis grouped SFTSV Hl19-31-4 and Hl19-31-13 from Pocheon with sub-genotype B-1 in all segments. SFTSV Hl20-8 was found to be a genomic organization compatible with B-1 (for L segment) and B-2 (for M and S segments) sub-genotypes, indicating a natural reassortment between sub-genotypes. CONCLUSION/SIGNIFICANCE: Amplicon-based next-generation sequencing is a robust tool for whole-genome sequencing of SFTSV using the nanopore platform. The molecular prevalence and geographical distribution of SFTSV enhanced the phylogeographic map at high resolution for sophisticated prevention of emerging SFTS in endemic areas. Our findings provide important insights into the rapid whole-genome sequencing and genetic diversity for the genome-based diagnosis of SFTSV in the endemic outbreak.
format Online
Article
Text
id pubmed-9499217
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-94992172022-09-23 Whole-genome sequencing and genetic diversity of severe fever with thrombocytopenia syndrome virus using multiplex PCR-based nanopore sequencing, Republic of Korea Lee, Jingyeong Park, Kyungmin Kim, Jongwoo Lee, Seung-Ho Lee, Geum-Young Cho, Seungchan Kim, Heung-Chul Klein, Terry A. Kim, Jeong-Ah Choi, Jeewan Park, Juwan Song, Dong-Hyun Gu, Se Hun Yun, Hyeongseok Kim, Jung-Eun Lee, Daesang Hur, Gyeung Haeng Jeong, Seong Tae Hwang, Il-Ung Kim, Won-Keun Song, Jin-Won PLoS Negl Trop Dis Research Article BACKGROUND: Whole-genome sequencing plays a critical role in the genomic epidemiology intended to improve understanding the spread of emerging viruses. Dabie bandavirus, causing severe fever with thrombocytopenia syndrome (SFTS), is a zoonotic tick-borne virus that poses a significant public health threat. We aimed to evaluate a novel amplicon-based nanopore sequencing tool to obtain whole-genome sequences of Dabie bandavirus, also known as SFTS virus (SFTSV), and investigate the molecular prevalence in wild ticks, Republic of Korea (ROK). PRINCIPAL FINDINGS: A total of 6,593 ticks were collected from Gyeonggi and Gangwon Provinces, ROK in 2019 and 2020. Quantitative polymerase chain reaction revealed the presence of SFSTV RNA in three Haemaphysalis longicornis ticks. Two SFTSV strains were isolated from H. longicornis captured from Pocheon and Cheorwon. Multiplex polymerase chain reaction-based nanopore sequencing provided nearly full-length tripartite genome sequences of SFTSV within one hour running. Phylogenetic and reassortment analyses were performed to infer evolutionary relationships among SFTSVs. Phylogenetic analysis grouped SFTSV Hl19-31-4 and Hl19-31-13 from Pocheon with sub-genotype B-1 in all segments. SFTSV Hl20-8 was found to be a genomic organization compatible with B-1 (for L segment) and B-2 (for M and S segments) sub-genotypes, indicating a natural reassortment between sub-genotypes. CONCLUSION/SIGNIFICANCE: Amplicon-based next-generation sequencing is a robust tool for whole-genome sequencing of SFTSV using the nanopore platform. The molecular prevalence and geographical distribution of SFTSV enhanced the phylogeographic map at high resolution for sophisticated prevention of emerging SFTS in endemic areas. Our findings provide important insights into the rapid whole-genome sequencing and genetic diversity for the genome-based diagnosis of SFTSV in the endemic outbreak. Public Library of Science 2022-09-12 /pmc/articles/PMC9499217/ /pubmed/36094957 http://dx.doi.org/10.1371/journal.pntd.0010763 Text en © 2022 Lee et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Lee, Jingyeong
Park, Kyungmin
Kim, Jongwoo
Lee, Seung-Ho
Lee, Geum-Young
Cho, Seungchan
Kim, Heung-Chul
Klein, Terry A.
Kim, Jeong-Ah
Choi, Jeewan
Park, Juwan
Song, Dong-Hyun
Gu, Se Hun
Yun, Hyeongseok
Kim, Jung-Eun
Lee, Daesang
Hur, Gyeung Haeng
Jeong, Seong Tae
Hwang, Il-Ung
Kim, Won-Keun
Song, Jin-Won
Whole-genome sequencing and genetic diversity of severe fever with thrombocytopenia syndrome virus using multiplex PCR-based nanopore sequencing, Republic of Korea
title Whole-genome sequencing and genetic diversity of severe fever with thrombocytopenia syndrome virus using multiplex PCR-based nanopore sequencing, Republic of Korea
title_full Whole-genome sequencing and genetic diversity of severe fever with thrombocytopenia syndrome virus using multiplex PCR-based nanopore sequencing, Republic of Korea
title_fullStr Whole-genome sequencing and genetic diversity of severe fever with thrombocytopenia syndrome virus using multiplex PCR-based nanopore sequencing, Republic of Korea
title_full_unstemmed Whole-genome sequencing and genetic diversity of severe fever with thrombocytopenia syndrome virus using multiplex PCR-based nanopore sequencing, Republic of Korea
title_short Whole-genome sequencing and genetic diversity of severe fever with thrombocytopenia syndrome virus using multiplex PCR-based nanopore sequencing, Republic of Korea
title_sort whole-genome sequencing and genetic diversity of severe fever with thrombocytopenia syndrome virus using multiplex pcr-based nanopore sequencing, republic of korea
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9499217/
https://www.ncbi.nlm.nih.gov/pubmed/36094957
http://dx.doi.org/10.1371/journal.pntd.0010763
work_keys_str_mv AT leejingyeong wholegenomesequencingandgeneticdiversityofseverefeverwiththrombocytopeniasyndromevirususingmultiplexpcrbasednanoporesequencingrepublicofkorea
AT parkkyungmin wholegenomesequencingandgeneticdiversityofseverefeverwiththrombocytopeniasyndromevirususingmultiplexpcrbasednanoporesequencingrepublicofkorea
AT kimjongwoo wholegenomesequencingandgeneticdiversityofseverefeverwiththrombocytopeniasyndromevirususingmultiplexpcrbasednanoporesequencingrepublicofkorea
AT leeseungho wholegenomesequencingandgeneticdiversityofseverefeverwiththrombocytopeniasyndromevirususingmultiplexpcrbasednanoporesequencingrepublicofkorea
AT leegeumyoung wholegenomesequencingandgeneticdiversityofseverefeverwiththrombocytopeniasyndromevirususingmultiplexpcrbasednanoporesequencingrepublicofkorea
AT choseungchan wholegenomesequencingandgeneticdiversityofseverefeverwiththrombocytopeniasyndromevirususingmultiplexpcrbasednanoporesequencingrepublicofkorea
AT kimheungchul wholegenomesequencingandgeneticdiversityofseverefeverwiththrombocytopeniasyndromevirususingmultiplexpcrbasednanoporesequencingrepublicofkorea
AT kleinterrya wholegenomesequencingandgeneticdiversityofseverefeverwiththrombocytopeniasyndromevirususingmultiplexpcrbasednanoporesequencingrepublicofkorea
AT kimjeongah wholegenomesequencingandgeneticdiversityofseverefeverwiththrombocytopeniasyndromevirususingmultiplexpcrbasednanoporesequencingrepublicofkorea
AT choijeewan wholegenomesequencingandgeneticdiversityofseverefeverwiththrombocytopeniasyndromevirususingmultiplexpcrbasednanoporesequencingrepublicofkorea
AT parkjuwan wholegenomesequencingandgeneticdiversityofseverefeverwiththrombocytopeniasyndromevirususingmultiplexpcrbasednanoporesequencingrepublicofkorea
AT songdonghyun wholegenomesequencingandgeneticdiversityofseverefeverwiththrombocytopeniasyndromevirususingmultiplexpcrbasednanoporesequencingrepublicofkorea
AT gusehun wholegenomesequencingandgeneticdiversityofseverefeverwiththrombocytopeniasyndromevirususingmultiplexpcrbasednanoporesequencingrepublicofkorea
AT yunhyeongseok wholegenomesequencingandgeneticdiversityofseverefeverwiththrombocytopeniasyndromevirususingmultiplexpcrbasednanoporesequencingrepublicofkorea
AT kimjungeun wholegenomesequencingandgeneticdiversityofseverefeverwiththrombocytopeniasyndromevirususingmultiplexpcrbasednanoporesequencingrepublicofkorea
AT leedaesang wholegenomesequencingandgeneticdiversityofseverefeverwiththrombocytopeniasyndromevirususingmultiplexpcrbasednanoporesequencingrepublicofkorea
AT hurgyeunghaeng wholegenomesequencingandgeneticdiversityofseverefeverwiththrombocytopeniasyndromevirususingmultiplexpcrbasednanoporesequencingrepublicofkorea
AT jeongseongtae wholegenomesequencingandgeneticdiversityofseverefeverwiththrombocytopeniasyndromevirususingmultiplexpcrbasednanoporesequencingrepublicofkorea
AT hwangilung wholegenomesequencingandgeneticdiversityofseverefeverwiththrombocytopeniasyndromevirususingmultiplexpcrbasednanoporesequencingrepublicofkorea
AT kimwonkeun wholegenomesequencingandgeneticdiversityofseverefeverwiththrombocytopeniasyndromevirususingmultiplexpcrbasednanoporesequencingrepublicofkorea
AT songjinwon wholegenomesequencingandgeneticdiversityofseverefeverwiththrombocytopeniasyndromevirususingmultiplexpcrbasednanoporesequencingrepublicofkorea