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Artemisia capillaris nucleorhabdovirus 1, a novel member of the genus Alphanucleorhabdovirus, identified in the Artemisia capillaris transcriptome

Authors
Choi, DongjinShin, ChaerimShirasu, KenIchihashi, YasunoriHahn, Yoonsoo
Issue Date
Jan-2022
Publisher
AEPRESS SRO
Keywords
Artemisia capillaris nucleorhabdovirus 1; plant virus; Alphanucleorhabdovirus; Rhabdoviridae
Citation
ACTA VIROLOGICA, v.66, no.2, pp 149 - 156
Pages
8
Journal Title
ACTA VIROLOGICA
Volume
66
Number
2
Start Page
149
End Page
156
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/59630
DOI
10.4149/av_2022_204
ISSN
0001-723X
1336-2305
Abstract
A novel, negative-sense, single-stranded RNA virus, Artemisia capillaris nucleorhabdovirus 1 (AcNRV1), was identified in the transcriptome data of Artemisia capillaris (commonly known as capillary wormwood) root tissue. The AcNRV1 genome contains six open reading frames encoding a nucleocapsid (N), phosphoprotein, movement protein P3, matrix protein, glycoprotein, and polymerase (L). Sequence comparison and phylogenetic analysis using L and N protein sequences revealed that AcNRV1 is a novel member of the genus Alphanucleorhabdovirus, one of the six plant-infecting rhabdovirus genera of the family Rhabdoviridae. Wheat yellow striate virus and rice yellow stunt virus were identified as the closest known rhabdoviruses of AcNRV1. The conserved regulatory sequences involved in transcription termination/polyadenylation (TTP) and transcription initiation (TI) of individual genes were identified in the AcNRV1 genome with the consensus sequence 3'-(A/U)UUAUUUUU-GGG-UUG-5' (in the negative-sense genome), whereby dashes separate the TTP, untranscribed intergenic spacer, and TI elements. The AcNRV1 genome sequence will contribute to further understanding the genome structural evolution of plant rhabdoviruses.
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Hahn, Yoonsoo
자연과학대학 (생명과학과)
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