Literature DB >> 26041290

Arenavirus Coinfections Are Common in Snakes with Boid Inclusion Body Disease.

J Hepojoki1, P Salmenperä2, T Sironen3, U Hetzel4, Y Korzyukov3, A Kipar4, O Vapalahti5.   

Abstract

Recently, novel arenaviruses were found in snakes with boid inclusion body disease (BIBD); these form the new genus Reptarenavirus within the family Arenaviridae. We used next-generation sequencing and de novo sequence assembly to investigate reptarenavirus isolates from our previous study. Four of the six isolates and all of the samples from snakes with BIBD contained at least two reptarenavirus species. The viruses sequenced comprise four novel reptarenavirus species and a representative of a new arenavirus genus.
Copyright © 2015, American Society for Microbiology. All Rights Reserved.

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Year:  2015        PMID: 26041290      PMCID: PMC4524219          DOI: 10.1128/JVI.01112-15

Source DB:  PubMed          Journal:  J Virol        ISSN: 0022-538X            Impact factor:   5.103


  12 in total

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3.  Detection of novel divergent arenaviruses in boid snakes with inclusion body disease in The Netherlands.

Authors:  R Bodewes; M J L Kik; V Stalin Raj; C M E Schapendonk; B L Haagmans; S L Smits; A D M E Osterhaus
Journal:  J Gen Virol       Date:  2013-03-06       Impact factor: 3.891

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6.  Isolation, identification, and characterization of novel arenaviruses, the etiological agents of boid inclusion body disease.

Authors:  Udo Hetzel; Tarja Sironen; Pasi Laurinmäki; Lassi Liljeroos; Aino Patjas; Heikki Henttonen; Antti Vaheri; Annette Artelt; Anja Kipar; Sarah J Butcher; Olli Vapalahti; Jussi Hepojoki
Journal:  J Virol       Date:  2013-08-07       Impact factor: 5.103

7.  Response of cells persistently infected with arenaviruses to superinfection with homotypic and heterotypic viruses.

Authors:  E B Damonte; S E Mersich; C E Coto
Journal:  Virology       Date:  1983-09       Impact factor: 3.616

8.  Identification, characterization, and in vitro culture of highly divergent arenaviruses from boa constrictors and annulated tree boas: candidate etiological agents for snake inclusion body disease.

Authors:  Mark D Stenglein; Chris Sanders; Amy L Kistler; J Graham Ruby; Jessica Y Franco; Drury R Reavill; Freeland Dunker; Joseph L Derisi
Journal:  mBio       Date:  2012-08-14       Impact factor: 7.867

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10.  Improvements to pairwise sequence comparison (PASC): a genome-based web tool for virus classification.

Authors:  Yiming Bao; Vyacheslav Chetvernin; Tatiana Tatusova
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  17 in total

1.  Experimental Reptarenavirus Infection of Boa constrictor and Python regius.

Authors:  U Hetzel; Y Korzyukov; S Keller; L Szirovicza; T Pesch; O Vapalahti; A Kipar; J Hepojoki
Journal:  J Virol       Date:  2021-01-13       Impact factor: 5.103

2.  In vitro isolation and molecular identification of reptarenavirus in Malaysia.

Authors:  Yusuf Abba; Hasliza Hassim; Hazilawati Hamzah; Omar Emad Ibrahim; Yusuf Ilyasu; Faruku Bande; Mohd Azmi Mohd Lila; Mohamed Mustapha Noordin
Journal:  Virus Genes       Date:  2016-05-03       Impact factor: 2.332

3.  Identification of Reptarenaviruses, Hartmaniviruses, and a Novel Chuvirus in Captive Native Brazilian Boa Constrictors with Boid Inclusion Body Disease.

Authors:  Fernando Froner Argenta; Jussi Hepojoki; Teemu Smura; Leonora Szirovicza; Márcia Elisa Hammerschmitt; David Driemeier; Anja Kipar; Udo Hetzel
Journal:  J Virol       Date:  2020-05-18       Impact factor: 5.103

4.  Co-infecting Reptarenaviruses Can Be Vertically Transmitted in Boa Constrictor.

Authors:  Saskia Keller; Udo Hetzel; Tarja Sironen; Yegor Korzyukov; Olli Vapalahti; Anja Kipar; Jussi Hepojoki
Journal:  PLoS Pathog       Date:  2017-01-23       Impact factor: 6.823

5.  Generation of Anti-Boa Immunoglobulin Antibodies for Serodiagnostic Applications, and Their Use to Detect Anti-Reptarenavirus Antibodies in Boa Constrictor.

Authors:  Yegor Korzyukov; Udo Hetzel; Anja Kipar; Olli Vapalahti; Jussi Hepojoki
Journal:  PLoS One       Date:  2016-06-29       Impact factor: 3.240

6.  Differences in Tissue and Species Tropism of Reptarenavirus Species Studied by Vesicular Stomatitis Virus Pseudotypes.

Authors:  Yegor Korzyukov; Rommel Iheozor-Ejiofor; Lev Levanov; Teemu Smura; Udo Hetzel; Leonora Szirovicza; Juan Carlos de la Torre; Luis Martinez-Sobrido; Anja Kipar; Olli Vapalahti; Jussi Hepojoki
Journal:  Viruses       Date:  2020-04-02       Impact factor: 5.048

7.  Ebola virus, but not Marburg virus, replicates efficiently and without required adaptation in snake cells.

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8.  Characterization of Haartman Institute snake virus-1 (HISV-1) and HISV-like viruses-The representatives of genus Hartmanivirus, family Arenaviridae.

Authors:  Jussi Hepojoki; Satu Hepojoki; Teemu Smura; Leonóra Szirovicza; Eva Dervas; Barbara Prähauser; Lisbeth Nufer; Elisabeth M Schraner; Olli Vapalahti; Anja Kipar; Udo Hetzel
Journal:  PLoS Pathog       Date:  2018-11-14       Impact factor: 6.823

9.  Differential Disease Susceptibilities in Experimentally Reptarenavirus-Infected Boa Constrictors and Ball Pythons.

Authors:  Mark D Stenglein; David Sanchez-Migallon Guzman; Valentina E Garcia; Marylee L Layton; Laura L Hoon-Hanks; Scott M Boback; M Kevin Keel; Tracy Drazenovich; Michelle G Hawkins; Joseph L DeRisi
Journal:  J Virol       Date:  2017-07-12       Impact factor: 5.103

10.  Ancient Evolution of Mammarenaviruses: Adaptation via Changes in the L Protein and No Evidence for Host-Virus Codivergence.

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Journal:  Genome Biol Evol       Date:  2018-03-01       Impact factor: 3.416

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