First report of orchid fleck virus and its mite vector on green cordyline

Orchid fleck virus (OFV) and its mite vector Brevipalpus californicus were for the first time identified on green cordyline plants showing distinctive chlorotic and necrotic ringspots. Thin section electron microscopy revealed bacilliform, dichorhavirus-like particles within nuclear viroplasms. RT-P...

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Published in:Australasian plant disease notes Vol. 13; no. 1; p. 11
Main Authors: Dietzgen, Ralf G., Tassi, Aline D., Freitas-Astúa, Juliana, Kitajima, Elliot W.
Format: Journal Article
Language:English
Published: Dordrecht Springer Netherlands 01.12.2018
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ISSN:1833-928X, 1833-928X
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Abstract Orchid fleck virus (OFV) and its mite vector Brevipalpus californicus were for the first time identified on green cordyline plants showing distinctive chlorotic and necrotic ringspots. Thin section electron microscopy revealed bacilliform, dichorhavirus-like particles within nuclear viroplasms. RT-PCR using OFV degenerate primers yielded a single amplicon, the nucleotide sequence of which closely matched the nucleoprotein gene of OFV.
AbstractList Orchid fleck virus (OFV) and its mite vector Brevipalpus californicus were for the first time identified on green cordyline plants showing distinctive chlorotic and necrotic ringspots. Thin section electron microscopy revealed bacilliform, dichorhavirus-like particles within nuclear viroplasms. RT-PCR using OFV degenerate primers yielded a single amplicon, the nucleotide sequence of which closely matched the nucleoprotein gene of OFV.
Orchid fleck virus (OFV) and its mite vector Brevipalpus californicus were for the first time identified on green cordyline plants showing distinctive chlorotic and necrotic ringspots. Thin section electron microscopy revealed bacilliform, dichorhavirus-like particles within nuclear viroplasms. RT-PCR using OFV degenerate primers yielded a single amplicon, the nucleotide sequence of which closely matched the nucleoprotein gene of OFV.
ArticleNumber 11
Author Freitas-Astúa, Juliana
Kitajima, Elliot W.
Dietzgen, Ralf G.
Tassi, Aline D.
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10.1590/S0103-90162010000300014
10.1046/j.1439-0434.2001.00702.x
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References_xml – reference: MelzerMAyinCSuganoJUchidaJKawateMBorthWHuJDifferentiation and distribution of cordyline viruses 1–4 in Hawaiian ti plants (Cordyline fruticosa L.)Viruses20135165516631:CAS:528:DC%2BC3sXhtFGqsL%2FM10.3390/v5071655238812743738953
– reference: DietzgenRGKuhnJHClawsonANFreitas-AstúaJGoodinMMKitajimaEWKondoHWetzelTWhitfieldAEDichorhavirus: a proposed new genus for Brevipalpus mite-transmitted, nuclear, bacilliform, bipartite, negative-strand RNA plant virusesArch Virol20141596076191:CAS:528:DC%2BC3sXhsFCit7%2FM10.1007/s00705-013-1834-0
– reference: MeiYBejermanNCrewKSMcCaffreyNDietzgenRGFirst report of orchid fleck virus in Lilyturf (Liriope spicata) in AustraliaPlant Dis2016100102810.1094/PDIS-10-15-1205-PDN
– reference: MirandaLCNaviaDRodriguesJCVBrevipalpus mites Donnadieu (Prostigmata: Tenuipalpidae) associated with ornamental plants in Distrito Federal, BrazilNeotrop Entomol20073658759210.1590/S1519-566X2007000400018
– reference: Beard JJ, Ochoa R, Bauchan GR, Trice MD, Redford AJ, Walters TW (2012) Flat Mites of the World, Edition 2. Identification Technology Program, CPHST, PPQ, APHIS, USDA; Fort Collins, CO. http://idtools.org/id/mites/flatmites/
– reference: Melzer M, Sugano J, Uchida J, Kawate M, Borth W, Hu J (2014) Partial characterization of a novel emara-like virus from Cordyline fruticosa (L.) with ti ringspot disease. In: Proceedings of 2014 APS-CPS Joint Meeting, Minneapolis, MA, USA, 9–13 August 2014; pp. 79
– reference: KitajimaEWKondoHMackenzieARezendeJAMGioriaRGibbsATamadaTComparative cytopathology and immunochemistry of Japanese, Australian and Brazilian isolates of orchid fleck virusJ Gen Plant Pathol20016723123710.1007/PL00013018
– reference: BlanchfieldALMackenzieAMGibbsAKondoHTamadaTWilsonCRIdentification of Orchid fleck virus by reverse transcriptase-polymerase chain reaction and analysis of isolate relationshipsJ Phytopathol20011497137181:CAS:528:DC%2BD38XovVGmtA%3D%3D10.1046/j.1439-0434.2001.00702.x
– reference: DietzgenRGKondoHGoodinMMKurathGVasilakisNThe family Rhabdoviridae: mono- and bipartite negative-sense RNA viruses with diverse genome organization and common evolutionary originsVirus Res20172271581701:CAS:528:DC%2BC28XhslCnt7rP10.1016/j.virusres.2016.10.010
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– reference: MelzerMJSetherDMBorthWBMersinoEFHuJSAn assemblage of closteroviruses infects Hawaiian ti (Cordyline fruticosa L)Virus Genes2011422542601:CAS:528:DC%2BC3MXkvVCrtr0%3D10.1007/s11262-010-0537-9
– reference: KitajimaEWChagasCMRodriguesJCVBrevipalpus-transmitted plant virus and virus0like diseases: cytopathology and some recent casesExp Appl Acarol2003301351601:STN:280:DC%2BD2c%2FlsFWmsQ%3D%3D10.1023/B:APPA.0000006546.55305.e3
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Snippet Orchid fleck virus (OFV) and its mite vector Brevipalpus californicus were for the first time identified on green cordyline plants showing distinctive...
Orchid fleck virus (OFV) and its mite vector Brevipalpus californicus were for the first time identified on green cordyline plants showing distinctive...
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SubjectTerms Agriculture
Biomedical and Life Sciences
Brevipalpus californicus
Cordyline
Ecology
electron microscopy
Entomology
genes
Life Sciences
mites
nucleoproteins
nucleotide sequences
Orchid fleck dichorhavirus
Plant Pathology
Plant Sciences
reverse transcriptase polymerase chain reaction
viral inclusion bodies
Title First report of orchid fleck virus and its mite vector on green cordyline
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