Literature DB >> 28964878

Isolation and characterization of Tarumizu tick virus: A new coltivirus from Haemaphysalis flava ticks in Japan.

Ryosuke Fujita1, Hiroko Ejiri2, Chang-Kweng Lim3, Shinichi Noda4, Takeo Yamauchi5, Mamoru Watanabe6, Daisuke Kobayashi6, Mutsuyo Takayama-Ito3, Katsunori Murota7, Guillermo Posadas-Herrera3, Shohei Minami8, Ryusei Kuwata8, Yukie Yamaguchi3, Madoka Horiya3, Yukie Katayama9, Hiroshi Shimoda8, Masayuki Saijo3, Ken Maeda8, Tetsuya Mizutani9, Haruhiko Isawa10, Kyoko Sawabe11.   

Abstract

During the course of tick-borne virus surveillance in Japan, three independent isolates of probably the same virus were obtained from three geographically distant populations of the hard tick Haemaphysalis flava. Genome analyses of the three isolates demonstrated that they were closely related but distinct strains of a novel virus, designated Tarumizu tick virus (TarTV), which has a genome of 12 double-stranded RNA segments. The development of the virus-induced cytopathic effects on BHK cells significantly varied according to virus strains. Ten out of 12 segments of TarTV appeared to encode putative orthologs or functional equivalents of viral proteins of Colorado tick fever virus (CTFV) and Eyach virus, suggesting that TarTV is the third member of the genus Coltivirus in the family Reoviridae. This was supported by the facts that the 5'- and 3'-terminal consensus sequences of coltivirus genomes were found also in TarTV genome, and segment 9 of TarTV had sequence and structural features that may mediate a stop codon read-through as observed in that of CTFV. However, segment 7 and 10 of TarTV had no significant sequence similarities to any other proteins of known coltiviruses. Electron microscopic analysis demonstrated that TarTV particle had a non-enveloped bilayer icosahedral structure, and viral inclusion bodies were formed in infected cells. TarTV could infect and replicate in several mammalian cell lines tested, but show no clinical symptoms in intracerebrally inoculated mice. Taken together, our findings provide new insights into genetic diversity and evolution of the genus Coltivirus.
Copyright © 2017 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Arbovirus; Coltivirus; Haemaphysalis flava; Reoviridae; Tick-borne viruses; Whole-genome analysis

Mesh:

Year:  2017        PMID: 28964878     DOI: 10.1016/j.virusres.2017.09.017

Source DB:  PubMed          Journal:  Virus Res        ISSN: 0168-1702            Impact factor:   3.303


  11 in total

1.  Characterization of Novel Reoviruses Wad Medani Virus (Orbivirus) and Kundal Virus (Coltivirus) Collected from Hyalomma anatolicum Ticks in India during Surveillance for Crimean Congo Hemorrhagic Fever.

Authors:  Pragya D Yadav; Shannon L M Whitmer; Prasad Sarkale; Terry Fei Fan Ng; Cynthia S Goldsmith; Dimpal A Nyayanit; Mathew D Esona; Punya Shrivastava-Ranjan; Rajen Lakra; Prachi Pardeshi; Triparna D Majumdar; Alicia Francis; John D Klena; Stuart T Nichol; Ute Ströher; Devendra Mourya
Journal:  J Virol       Date:  2019-06-14       Impact factor: 5.103

2.  Development of an entirely plasmid-based reverse genetics system for 12-segmented double-stranded RNA viruses.

Authors:  Ryotaro Nouda; Shohei Minami; Yuta Kanai; Takahiro Kawagishi; Jeffery A Nurdin; Moeko Yamasaki; Ryusei Kuwata; Hiroshi Shimoda; Ken Maeda; Takeshi Kobayashi
Journal:  Proc Natl Acad Sci U S A       Date:  2021-10-19       Impact factor: 11.205

3.  Characterization of AV422 from Haemaphysalis flava ticks in vitro.

Authors:  Lei Liu; Hao Tang; De-Yong Duan; Jin-Bao Liu; Jie Wang; Li-Li Feng; Tian-Yin Cheng
Journal:  Exp Appl Acarol       Date:  2021-07-23       Impact factor: 2.132

4.  Toyo virus, a novel member of the Kaisodi group in the genus Uukuvirus (family Phenuiviridae) found in Haemaphysalis formosensis ticks in Japan.

Authors:  Daisuke Kobayashi; Ryusei Kuwata; Toshiya Kimura; Astri Nur Faizah; Yukiko Higa; Toshihiko Hayashi; Kyoko Sawabe; Haruhiko Isawa
Journal:  Arch Virol       Date:  2021-08-02       Impact factor: 2.574

5.  Extensive Diversity of RNA Viruses in Australian Ticks.

Authors:  Erin Harvey; Karrie Rose; John-Sebastian Eden; Nathan Lo; Thilanka Abeyasuriya; Mang Shi; Stephen L Doggett; Edward C Holmes
Journal:  J Virol       Date:  2019-01-17       Impact factor: 5.103

6.  Detection of Multiple Intracellular Bacterial Pathogens in Haemaphysalis flava Ticks Collected from Hedgehogs in Central China.

Authors:  Li-Zhu Fang; Si-Cong Lei; Zhi-Jian Yan; Xiao Xiao; Jian-Wei Liu; Xiao-Qing Gong; Hao Yu; Xue-Jie Yu
Journal:  Pathogens       Date:  2021-01-23

7.  Detection of Jingmenviruses in Japan with Evidence of Vertical Transmission in Ticks.

Authors:  Daisuke Kobayashi; Ryusei Kuwata; Toshiya Kimura; Hiroshi Shimoda; Ryosuke Fujita; Astri Nur Faizah; Izumi Kai; Ryo Matsumura; Yudai Kuroda; Shumpei Watanabe; Sawako Kuniyoshi; Takeo Yamauchi; Mamoru Watanabe; Yukiko Higa; Toshihiko Hayashi; Hiroto Shinomiya; Ken Maeda; Shinji Kasai; Kyoko Sawabe; Haruhiko Isawa
Journal:  Viruses       Date:  2021-12-19       Impact factor: 5.048

8.  Newly identified viral genomes in pangolins with fatal disease.

Authors:  Wen-Hua Gao; Xian-Dan Lin; Yan-Mei Chen; Chun-Gang Xie; Zhi-Zhou Tan; Jia-Jun Zhou; Shuai Chen; Edward C Holmes; Yong-Zhen Zhang
Journal:  Virus Evol       Date:  2020-04-12

9.  Sustained RNA virome diversity in Antarctic penguins and their ticks.

Authors:  Michelle Wille; Erin Harvey; Mang Shi; Daniel Gonzalez-Acuña; Edward C Holmes; Aeron C Hurt
Journal:  ISME J       Date:  2020-04-14       Impact factor: 10.302

10.  Genomic Evaluation of the Genus Coltivirus Indicates Genetic Diversity among Colorado Tick Fever Virus Strains and Demarcation of a New Species.

Authors:  Holly R Hughes; Jason O Velez; Kelly Fitzpatrick; Emily H Davis; Brandy J Russell; Amy J Lambert; J Erin Staples; Aaron C Brault
Journal:  Diseases       Date:  2021-12-17
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