Skip to main content
Top
Published in: Archives of Virology 11/2018

01-11-2018 | Annotated Sequence Record

The complete genomic sequence of a novel megabirnavirus from Fusarium pseudograminearum, the causal agent of wheat crown rot

Authors: Xiaoting Zhang, Fei Gao, Fang Zhang, Yuan Xie, Lin Zhou, Hongxia Yuan, Songbai Zhang, Honglian Li

Published in: Archives of Virology | Issue 11/2018

Login to get access

Abstract

A novel double-stranded RNA (dsRNA) mycovirus, named Fusarium pseudograminearum megabirnavirus 1 (FpgMBV1), was found in a hypovirulent strain FC136-2A of Fusarium pseudograminearum, the causal agent of wheat crown rot. The complete genome of FpgMBV1 comprised two dsRNA segments, L1-dsRNA (8951 bp) and L2-dsRNA (5337 bp). Both dsRNAs carry two open reading frames on the positive strand. L1-dsRNA potentially encodes a 131.3-kDa coat protein (CP) and a 126.3-kDa RNA-dependent RNA polymerase (RdRp), while L2-dsRNA encodes two putative proteins of 97.2 kDa and 30.6 kDa with unknown functions. As found in members of the family Megabirnaviridae, the 5’- and 3’-terminal sequences of L1-dsRNA and L2-dsRNA of FpgMBV1 are highly conserved. The identity between L1-dsRNA (1630 nt) and L2-dsRNA (1682 nt) is 88.95%, and the first 236 nt (nt 1-236) are exactly identical. The 3’ UTRs of L1-dsRNA (155 nt) and L2-dsRNA (109 nt) are 66.67% identical, with identical terminal hexamer sequences (5’-AAAAGC-3’). Phylogenetic analyses based on the amino acid sequences of the RdRps indicated that FpgMBV1 is a new member of the family Megabirnaviridae.
Appendix
Available only for authorised users
Literature
1.
go back to reference Arjona-Lopez JT, Telengech P, Jamal A, Hisano S, Kondo H, Yelin MD, Arjona-Girona I, Kanematsu S, Lopez-Herrera CJ, Suzuki N (2018) Novel, diverse RNA viruses from Mediterranean isolates of the phytopathogenic fungus, Rosellinia necatrix: insights into evolutionary biology of fungal viruses. Environ Microbiol. https://doi.org/10.1111/1462-2920.14065 CrossRefPubMed Arjona-Lopez JT, Telengech P, Jamal A, Hisano S, Kondo H, Yelin MD, Arjona-Girona I, Kanematsu S, Lopez-Herrera CJ, Suzuki N (2018) Novel, diverse RNA viruses from Mediterranean isolates of the phytopathogenic fungus, Rosellinia necatrix: insights into evolutionary biology of fungal viruses. Environ Microbiol. https://​doi.​org/​10.​1111/​1462-2920.​14065 CrossRefPubMed
2.
go back to reference Chiba S, Salaipeth L, Lin YH, Sasaki A, Kanematsu S, Suzuki N (2009) A novel bipartite double-stranded RNA mycovirus from the white root rot fungus Rosellinia necatrix: molecular and biological characterization, taxonomic considerations, and potential for biological control. J Virol 83:12801–12812CrossRefPubMedPubMedCentral Chiba S, Salaipeth L, Lin YH, Sasaki A, Kanematsu S, Suzuki N (2009) A novel bipartite double-stranded RNA mycovirus from the white root rot fungus Rosellinia necatrix: molecular and biological characterization, taxonomic considerations, and potential for biological control. J Virol 83:12801–12812CrossRefPubMedPubMedCentral
3.
go back to reference Miyazaki N, Salaipeth L, Kanematsu S, Iwasaki K, Suzuki N (2015) Megabirnavirus structure reveals a putative 120-subunit capsid formed by asymmetrical dimers with distinctive large protrusions. J Gen Virol 96:2435–2441CrossRefPubMed Miyazaki N, Salaipeth L, Kanematsu S, Iwasaki K, Suzuki N (2015) Megabirnavirus structure reveals a putative 120-subunit capsid formed by asymmetrical dimers with distinctive large protrusions. J Gen Virol 96:2435–2441CrossRefPubMed
4.
go back to reference Morris TJ, Dodds JA (1979) Isolation and analysis of double stranded RNA from virus infected plant and fungal tissue. Phytopathology 69:854–858CrossRef Morris TJ, Dodds JA (1979) Isolation and analysis of double stranded RNA from virus infected plant and fungal tissue. Phytopathology 69:854–858CrossRef
5.
go back to reference Sasaki A, Nakamura H, Suzuki N, Kanernatsu S (2016) Characterization of a new megabirnavirus that confers hypovirulence with the aid of a co-infecting partitivirus to the host fungus, Rosellinia necatrix. Virus Res 219:73–82CrossRefPubMed Sasaki A, Nakamura H, Suzuki N, Kanernatsu S (2016) Characterization of a new megabirnavirus that confers hypovirulence with the aid of a co-infecting partitivirus to the host fungus, Rosellinia necatrix. Virus Res 219:73–82CrossRefPubMed
6.
go back to reference Wang MH, Wang Y, Sun XZ, Cheng JS, Fu YP, Liu HQ, Jiang DH, Ghabrial SA, Xie JT (2015) Characterization of a novel megabirnavirus from Sclerotinia sclerotiorum reveals horizontal gene transfer from single-stranded RNA virus to double-stranded RNA virus. J Virol 89:8567–8579CrossRefPubMedPubMedCentral Wang MH, Wang Y, Sun XZ, Cheng JS, Fu YP, Liu HQ, Jiang DH, Ghabrial SA, Xie JT (2015) Characterization of a novel megabirnavirus from Sclerotinia sclerotiorum reveals horizontal gene transfer from single-stranded RNA virus to double-stranded RNA virus. J Virol 89:8567–8579CrossRefPubMedPubMedCentral
Metadata
Title
The complete genomic sequence of a novel megabirnavirus from Fusarium pseudograminearum, the causal agent of wheat crown rot
Authors
Xiaoting Zhang
Fei Gao
Fang Zhang
Yuan Xie
Lin Zhou
Hongxia Yuan
Songbai Zhang
Honglian Li
Publication date
01-11-2018
Publisher
Springer Vienna
Published in
Archives of Virology / Issue 11/2018
Print ISSN: 0304-8608
Electronic ISSN: 1432-8798
DOI
https://doi.org/10.1007/s00705-018-3970-z

Other articles of this Issue 11/2018

Archives of Virology 11/2018 Go to the issue