Novel ollusvirus detected in a solitary wild bee species (Osmia taurus) in Japan
Pathogens of wild bees in Japan remain largely unknown. We examined viruses harbored by solitary wild Osmia bees, including Osmia cornifrons and Osmia taurus . Interestingly, the full-length genome of a novel virus (designated as "Osmia-associated bee chuvirus", OABV) was identified in thr...
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Published in | Archives of virology Vol. 168; no. 7; p. 183 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
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01.07.2023
Springer Nature B.V |
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Abstract | Pathogens of wild bees in Japan remain largely unknown. We examined viruses harbored by solitary wild
Osmia
bees, including
Osmia cornifrons
and
Osmia taurus
. Interestingly, the full-length genome of a novel virus (designated as "Osmia-associated bee chuvirus", OABV) was identified in three
Osmia taurus
bees collected in Fukushima prefecture. The sequences and genomic features are similar to those of Scaldis River bee virus. Phylogenetic analysis based on RNA-dependent RNA polymerase, glycoprotein, and nucleoprotein sequences showed that OABV formed a subcluster within ollusviruses and was closely related to strains identified in European countries. This study extends our knowledge of wild bee parasites in Japan. |
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AbstractList | Pathogens of wild bees in Japan remain largely unknown. We examined viruses harbored by solitary wild Osmia bees, including Osmia cornifrons and Osmia taurus. Interestingly, the full-length genome of a novel virus (designated as "Osmia-associated bee chuvirus", OABV) was identified in three Osmia taurus bees collected in Fukushima prefecture. The sequences and genomic features are similar to those of Scaldis River bee virus. Phylogenetic analysis based on RNA-dependent RNA polymerase, glycoprotein, and nucleoprotein sequences showed that OABV formed a subcluster within ollusviruses and was closely related to strains identified in European countries. This study extends our knowledge of wild bee parasites in Japan. Pathogens of wild bees in Japan remain largely unknown. We examined viruses harbored by solitary wild Osmia bees, including Osmia cornifrons and Osmia taurus. Interestingly, the full-length genome of a novel virus (designated as "Osmia-associated bee chuvirus", OABV) was identified in three Osmia taurus bees collected in Fukushima prefecture. The sequences and genomic features are similar to those of Scaldis River bee virus. Phylogenetic analysis based on RNA-dependent RNA polymerase, glycoprotein, and nucleoprotein sequences showed that OABV formed a subcluster within ollusviruses and was closely related to strains identified in European countries. This study extends our knowledge of wild bee parasites in Japan.Pathogens of wild bees in Japan remain largely unknown. We examined viruses harbored by solitary wild Osmia bees, including Osmia cornifrons and Osmia taurus. Interestingly, the full-length genome of a novel virus (designated as "Osmia-associated bee chuvirus", OABV) was identified in three Osmia taurus bees collected in Fukushima prefecture. The sequences and genomic features are similar to those of Scaldis River bee virus. Phylogenetic analysis based on RNA-dependent RNA polymerase, glycoprotein, and nucleoprotein sequences showed that OABV formed a subcluster within ollusviruses and was closely related to strains identified in European countries. This study extends our knowledge of wild bee parasites in Japan. Pathogens of wild bees in Japan remain largely unknown. We examined viruses harbored by solitary wild Osmia bees, including Osmia cornifrons and Osmia taurus . Interestingly, the full-length genome of a novel virus (designated as "Osmia-associated bee chuvirus", OABV) was identified in three Osmia taurus bees collected in Fukushima prefecture. The sequences and genomic features are similar to those of Scaldis River bee virus. Phylogenetic analysis based on RNA-dependent RNA polymerase, glycoprotein, and nucleoprotein sequences showed that OABV formed a subcluster within ollusviruses and was closely related to strains identified in European countries. This study extends our knowledge of wild bee parasites in Japan. |
ArticleNumber | 183 |
Author | Nunomura, Yuka Yokota, Tomoko Oba, Mami Mizutani, Tetsuya Hsu, Wei-Li Takemae, Hitoshi Sakamoto, Yoshiko |
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Cites_doi | 10.1038/nature20588 10.1146/annurev.ecolsys.34.011802.132355 10.1128/aem.01954-21 10.1093/molbev/msab120 10.3390/pathogens10081044 10.1111/syen.12470 10.1007/s00705-018-4075-4 10.1051/apido:2007037 10.1371/journal.ppat.1008224 10.1038/s41598-020-75566-9 10.1292/jvms.15-0536 10.1371/journal.pone.0168456 10.1016/j.anbehav.2007.06.018 10.56021/9780801885730 10.1016/j.cois.2018.02.011 |
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Copyright | The Author(s), under exclusive licence to Springer-Verlag GmbH Austria, part of Springer Nature 2023 2023. The Author(s), under exclusive licence to Springer-Verlag GmbH Austria, part of Springer Nature. The Author(s), under exclusive licence to Springer-Verlag GmbH Austria, part of Springer Nature 2023. |
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References | FolmerOBlackMHoehWLutzRVrijenhoekRDNA primers for amplification of mitochondrial cytochrome c oxidase subunit I from diverse metazoan invertebratesMol Mar Biol Biotechnol1994352942991:CAS:528:DyaK2MXjt12gtLs%3D7881515 BoschJProduction of undersized offspring in a solitary beeAnim Behav20087580981610.1016/j.anbehav.2007.06.018 TamuraKStecherGKumarSMEGA11: molecular evolutionary genetics analysis version 11Mol Biol Evol2021387302230271:CAS:528:DC%2BB3MXitlCktrfN10.1093/molbev/msab120338924918233496 LeCroyKASavoy-BurkeGCarrDEDelaneyDARoulstonTHDecline of six native mason bee species following the arrival of an exotic congenerSci Rep2020101187451:CAS:528:DC%2BB3cXit1OrurvJ10.1038/s41598-020-75566-9331279317599227 KleinAMBoreuxVFornoffFMupepeleACPufalGRelevance of wild and managed bees for human well-beingCurr Opin Insect Sci201826828810.1016/j.cois.2018.02.01129764666 PaxtonRJKleeJKorpelaSFriesINosema ceranae has infected Apis mellifera in Europe since at least 1998 and may be more virulent than Nosema apisApidologie20073855856510.1051/apido:2007037 SchoonvaereKDe SmetLSmaggheGVierstraeteABraeckmanBPde GraafDCUnbiased RNA shotgun metagenomics in social and solitary wild bees detects associations with eukaryote parasites and new virusesPLoS ONE20161112181:CAS:528:DC%2BC2sXktVOhsb0%3D10.1371/journal.pone.0168456 PottsSGImperatriz-FonsecaVNgoHTAizenMABiesmeijerJCBreezeTDDicksLVGaribaldiLAHillRSetteleJVanbergenAJSafeguarding pollinators and their values to human well-beingNature201654076322202291:CAS:528:DC%2BC28XhvFGgurjL10.1038/nature2058827894123 KaferSParaskevopoulouSZirkelFWiesekeNDonathAPetersenMJonesTCLiuSZhouXMiddendorfMJunglenSMisofBDrostenCRe-assessing the diversity of negative strand RNA viruses in insectsPLoS Pathog201915121:CAS:528:DC%2BB3cXktFOksLw%3D10.1371/journal.ppat.1008224318301286932829 NanettiABortolottiLCiliaGPathogens spillover from honey bees to other arthropodsPathogens202110810441:CAS:528:DC%2BB3MXis1Snur7E10.3390/pathogens10081044344515088400633 BranstetterMGMullerAGriswoldTLOrrMCZhuCDUltraconserved element phylogenomics and biogeography of the agriculturally important mason bee subgenus Osmia (Osmia)Syst Entomol202146245347210.1111/syen.12470 GoulsonDEffects of introduced bees on native ecosystemsAnnu Rev Ecol Evol Syst20033412610.1146/annurev.ecolsys.34.011802.132355 WangHLiuYLiuWCaoMWangXSequence analysis and genomic organization of a novel chuvirus, Taiyuan leafhopper virusArch Virol201916426176201:CAS:528:DC%2BC1cXhvFCrsLrE10.1007/s00705-018-4075-430334095 MichenerCDThe Bees of the World20072BaltimoreJohn Hopkins University Press10.56021/9780801885730 Ascher JS, J Pickering (2020) Discover Life bee species guide and world checklist (Hymenoptera: Apoidea: Anthophila). http://www.discoverlife.org/mp/20q?guide=Apoidea_species.Draft-55, 17 November 2020 ObaMOmatsuTTakanoAFujitaHSatoKNakamotoATakahashiMTakadaNKawabataHAndoSMizutaniTA novel Bunyavirus from the soft tick, Argas vespertilionis, in JapanJ Vet Med Sci20167834434451:CAS:528:DC%2BC2sXhvVKksg%3D%3D10.1292/jvms.15-053626498534 Di PaolaNDheillyNMJunglenSParaskevopoulouSPostlerTSShiMKuhnJHJingchuvirales: a new taxonomical framework for a rapidly expanding order of unusual monjiviricete viruses broadly distributed among arthropod subphylaAppl Environ Microbiol202288610.1128/aem.01954-2135108077 MG Branstetter (5805_CR15) 2021; 46 D Goulson (5805_CR5) 2003; 34 J Bosch (5805_CR7) 2008; 75 SG Potts (5805_CR4) 2016; 540 M Oba (5805_CR9) 2016; 78 KA LeCroy (5805_CR16) 2020; 10 AM Klein (5805_CR3) 2018; 26 S Kafer (5805_CR14) 2019; 15 N Di Paola (5805_CR13) 2022; 88 CD Michener (5805_CR1) 2007 RJ Paxton (5805_CR6) 2007; 38 5805_CR2 K Schoonvaere (5805_CR10) 2016; 11 O Folmer (5805_CR8) 1994; 3 A Nanetti (5805_CR17) 2021; 10 H Wang (5805_CR11) 2019; 164 K Tamura (5805_CR12) 2021; 38 |
References_xml | – reference: BoschJProduction of undersized offspring in a solitary beeAnim Behav20087580981610.1016/j.anbehav.2007.06.018 – reference: PaxtonRJKleeJKorpelaSFriesINosema ceranae has infected Apis mellifera in Europe since at least 1998 and may be more virulent than Nosema apisApidologie20073855856510.1051/apido:2007037 – reference: SchoonvaereKDe SmetLSmaggheGVierstraeteABraeckmanBPde GraafDCUnbiased RNA shotgun metagenomics in social and solitary wild bees detects associations with eukaryote parasites and new virusesPLoS ONE20161112181:CAS:528:DC%2BC2sXktVOhsb0%3D10.1371/journal.pone.0168456 – reference: WangHLiuYLiuWCaoMWangXSequence analysis and genomic organization of a novel chuvirus, Taiyuan leafhopper virusArch Virol201916426176201:CAS:528:DC%2BC1cXhvFCrsLrE10.1007/s00705-018-4075-430334095 – reference: Di PaolaNDheillyNMJunglenSParaskevopoulouSPostlerTSShiMKuhnJHJingchuvirales: a new taxonomical framework for a rapidly expanding order of unusual monjiviricete viruses broadly distributed among arthropod subphylaAppl Environ Microbiol202288610.1128/aem.01954-2135108077 – reference: FolmerOBlackMHoehWLutzRVrijenhoekRDNA primers for amplification of mitochondrial cytochrome c oxidase subunit I from diverse metazoan invertebratesMol Mar Biol Biotechnol1994352942991:CAS:528:DyaK2MXjt12gtLs%3D7881515 – reference: KleinAMBoreuxVFornoffFMupepeleACPufalGRelevance of wild and managed bees for human well-beingCurr Opin Insect Sci201826828810.1016/j.cois.2018.02.01129764666 – reference: BranstetterMGMullerAGriswoldTLOrrMCZhuCDUltraconserved element phylogenomics and biogeography of the agriculturally important mason bee subgenus Osmia (Osmia)Syst Entomol202146245347210.1111/syen.12470 – reference: TamuraKStecherGKumarSMEGA11: molecular evolutionary genetics analysis version 11Mol Biol Evol2021387302230271:CAS:528:DC%2BB3MXitlCktrfN10.1093/molbev/msab120338924918233496 – reference: GoulsonDEffects of introduced bees on native ecosystemsAnnu Rev Ecol Evol 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Snippet | Pathogens of wild bees in Japan remain largely unknown. We examined viruses harbored by solitary wild
Osmia
bees, including
Osmia cornifrons
and
Osmia taurus
.... Pathogens of wild bees in Japan remain largely unknown. We examined viruses harbored by solitary wild Osmia bees, including Osmia cornifrons and Osmia taurus.... |
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StartPage | 183 |
SubjectTerms | Amino acids bee viruses bees Biomedical and Life Sciences Biomedicine Brief Report Chuviridae DNA-directed RNA polymerase Genes genome Genomes Genomics Glycoproteins Infectious Diseases Japan Medical Microbiology nucleoproteins Osmia Osmia cornifrons Osmia taurus Parasites Pathogens Phylogenetics Phylogeny Pollinators rivers RNA polymerase RNA-directed RNA polymerase Virology Viruses |
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Title | Novel ollusvirus detected in a solitary wild bee species (Osmia taurus) in Japan |
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