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Published in: Archives of Virology 2/2018

01-02-2018 | Annotated Sequence Record

Complete genome sequence of a novel bromovirus infecting elderberry (Sambucus nigra L.) in the Czech Republic

Authors: Dana Šafářová, Thierry Candresse, Milan Navrátil

Published in: Archives of Virology | Issue 2/2018

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Abstract

The genus Bromovirus currently contains six species whose members have relatively narrow host ranges. In the present work, a new bromovirus infecting elderberry (Sambucus nigra L.) is reported. dsRNA was purified and sequenced by next-generation sequencing, and with minimal additional completion by Sanger sequencing, the full tripartite genome was obtained. RNA1 is 3241 nt long and contains ORF1 (1a protein), RNA2 is 2810 nt long and contains ORF2 (2a protein), and RNA3 is 2244 nt long and contains ORF3a (movement protein) and ORF3b (coat protein, CP), separated by an intercistronic poly(A) stretch. Proteins 1a and 2a showed highest sequence identity (69.9% and 69.4%) to the corresponding proteins of melandrium yellow fleck virus. The coat protein showed highest sequence identity (67.9%) to that of brome mosaic virus. The genome shows a typical bromovirus organisation comprising of all the conserved protein domains within the genus. Phylogenetic analysis supports the assignment of this virus as a new member of the genus Bromovirus, for which the name “sambucus virus S” (SVS) is proposed.
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Literature
1.
go back to reference Altschul AF, Madden TL, Schäffer AA, Zhang J, Zhang Z, Miller W, Lipman DJ (1997) Gapped BLAST and PSI-BLAST: a new generation of protein database search programs. Nucleic Acids Res 25:3389–3402CrossRefPubMedPubMedCentral Altschul AF, Madden TL, Schäffer AA, Zhang J, Zhang Z, Miller W, Lipman DJ (1997) Gapped BLAST and PSI-BLAST: a new generation of protein database search programs. Nucleic Acids Res 25:3389–3402CrossRefPubMedPubMedCentral
2.
go back to reference Bawden FC, Chaudhuri RP, Kassanis B (1951) Some properties of broad bean mottle virus. Ann Appl Biol 38:774–784CrossRef Bawden FC, Chaudhuri RP, Kassanis B (1951) Some properties of broad bean mottle virus. Ann Appl Biol 38:774–784CrossRef
3.
4.
go back to reference Candresse T, Marais A, Faure C, Gentit P (2013) Association of Little cherry virus 1 (LChV1) with the Shirofugen stunt disease and characterization of the genome of a divergent LChV1 isolate. Phytopathology 103(3):293–298CrossRefPubMed Candresse T, Marais A, Faure C, Gentit P (2013) Association of Little cherry virus 1 (LChV1) with the Shirofugen stunt disease and characterization of the genome of a divergent LChV1 isolate. Phytopathology 103(3):293–298CrossRefPubMed
5.
go back to reference Dale JL, Gibbs AJ, Behncken GM (1984) Cassia yellow blotch virus: a new bromovirus from an Australian native legume, Cassia pleurocarpa. J Gen Virol 65:281–288CrossRef Dale JL, Gibbs AJ, Behncken GM (1984) Cassia yellow blotch virus: a new bromovirus from an Australian native legume, Cassia pleurocarpa. J Gen Virol 65:281–288CrossRef
6.
go back to reference Hollings M, Horvath J (1981) Melandrium yellow fleck virus. CMI/AAB Descriptions of Plant Viruses No. 236 Hollings M, Horvath J (1981) Melandrium yellow fleck virus. CMI/AAB Descriptions of Plant Viruses No. 236
7.
go back to reference Kuhn CW (1964) Purification, serology and properties of a new cowpea virus. Phytopathology 54:853–857 Kuhn CW (1964) Purification, serology and properties of a new cowpea virus. Phytopathology 54:853–857
8.
go back to reference Kumar S, Stecher G, Tamura K (2016) MEGA7: molecular evolutionary genetics analysis version 7.0 for bigger datasets. Mol Biol Evol 33:1870–1874CrossRefPubMed Kumar S, Stecher G, Tamura K (2016) MEGA7: molecular evolutionary genetics analysis version 7.0 for bigger datasets. Mol Biol Evol 33:1870–1874CrossRefPubMed
9.
go back to reference Makkouk KM, Bos L, Rizkallah A, Azzam OI, Katul L (1989) Broad bean mottle virus: Identification, host range, serology, and occurrence on faba bean (Vicia faba) in West Asia and North Africa. Neth J Plant Path 94(4):195–212CrossRef Makkouk KM, Bos L, Rizkallah A, Azzam OI, Katul L (1989) Broad bean mottle virus: Identification, host range, serology, and occurrence on faba bean (Vicia faba) in West Asia and North Africa. Neth J Plant Path 94(4):195–212CrossRef
10.
go back to reference Marchler-Bauer A, Bo Y, Han L et al (2017) CDD/SPARCLE: functional classification of proteins via subfamily domain architectures. Nucleic Acids Res 45(D):200–203CrossRef Marchler-Bauer A, Bo Y, Han L et al (2017) CDD/SPARCLE: functional classification of proteins via subfamily domain architectures. Nucleic Acids Res 45(D):200–203CrossRef
11.
go back to reference McKinney HH, Fellows H, Johnston CO (1942) Mosaic of Bromus inermis. Phytopathology 32(4):331 McKinney HH, Fellows H, Johnston CO (1942) Mosaic of Bromus inermis. Phytopathology 32(4):331
12.
go back to reference Valverde RA (1984) Spring beauty latent virus: a new member of the Bromovirus group. Phytopathology 75:395–398CrossRef Valverde RA (1984) Spring beauty latent virus: a new member of the Bromovirus group. Phytopathology 75:395–398CrossRef
Metadata
Title
Complete genome sequence of a novel bromovirus infecting elderberry (Sambucus nigra L.) in the Czech Republic
Authors
Dana Šafářová
Thierry Candresse
Milan Navrátil
Publication date
01-02-2018
Publisher
Springer Vienna
Published in
Archives of Virology / Issue 2/2018
Print ISSN: 0304-8608
Electronic ISSN: 1432-8798
DOI
https://doi.org/10.1007/s00705-017-3629-1

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