Search results for "Mosaic virus"

showing 10 items of 35 documents

Basil (Ocimum basilicum), a new host of Pepino mosaic virus.

2009

Pepino mosaic virus (PepMV), a member of the genus Potexvirus , was first described in 1980 on pepino ( Solanum muricatum ) and was later isolated from different wild species of the genus Solanum (formerly Lycopersicon ) (Soler et al ., 2002). PepMV has been reported in several European countries and in North America, causing disease in tomato. In July 2008, plants of basil ( Ocimum basilicum ) showing interveinal chlorosis on young leaves were observed in three greenhouses in Sicily, in the area where tomato plants were found to be infected by PepMV in 2005 (Davino et al ., 2006). The disease was transmitted mechanically to Nicotiana benthamiana , producing chlorotic spots and leaf deforma…

Basil Pepino mosaic virus.Chlorosisfood.ingredientbiologySpotsfungiBasilicumfood and beveragesNicotiana benthamianaPlant ScienceHorticulturebiology.organism_classificationOcimumLycopersiconfoodPlant virusBotanyGeneticsSolanumAgronomy and Crop Science
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Insertion and Topology of a Plant Viral Movement Protein in the Endoplasmic Reticulum Membrane

2002

Virus-encoded movement proteins (MPs) mediate cell-to-cell spread of viral RNA through plant membranous intercellular connections, the plasmodesmata. The molecular pathway by which MPs interact with viral genomes and target plasmodesmata channels is largely unknown. The 9-kDa MP from carnation mottle carmovirus (CarMV) contains two potential transmembrane domains. To explore the possibility that this protein is in fact an intrinsic membrane protein, we have investigated its insertion into the endoplasmic reticulum membrane. By using in vitro translation in the presence of dog pancreas microsomes, we demonstrate that CarMV p9 inserts into the endoplasmic reticulum without the aid of any addi…

BioquímicaGlycosylationMolecular Sequence DataPlasmodesmaBiologyEndoplasmic ReticulumTopologyBiochemistryProtein Structure SecondaryViral ProteinsAmino Acid SequenceMolecular BiologyEndoplasmic reticulumCarmovirusProteïnes de membranaMembrane ProteinsSTIM1Translation (biology)Cell Biologybiology.organism_classificationVirusCell biologyPlant Viral Movement ProteinsTobacco Mosaic VirusTransmembrane domainCytoplasmMembrane topologyCarmovirusJournal of Biological Chemistry
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First Report of Tomato torrado virus Infecting Tomato in Italy.

2010

In 2009 and 2010, approximately 2% of plants had disease symptoms, including initial leaflet chlorosis that later developed into necrotic spots and general necroses along the leaflet. Fruit production on affected plants was substantially reduced and necroses were also present. Total RNA was extracted from five symptomatic plant samples using the RNeasy Plant Mini Kit (Qiagen, Hilden, Germany) and analyzed by reverse transcription (RT)-PCR with specific primer pair: TR2F (5′ GAAGGACGAAGAGCGACTG 3′), and TR2R (5′ AAGGTAGGTATGCGTTTGC 3′) (1). The primers amplified a 575-bp fragment within the coat protein Vp23 of Tomato torrado virus (ToTV). No RT-PCR products were observed when water or asym…

ChlorosisSpotsbiologyfungiSettore AGR/12 - Patologia Vegetalefood and beveragesPlant ScienceMolecular cloningbiology.organism_classificationVirologySerologyCucumber mosaic virusToTV ItalyPlant virusGenBankTomato mosaic virusAgronomy and Crop SciencePlant disease
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Arabidopsis thalianagenes contributing to differences in the outcome of infection with generalist and specialist strains ofTurnip mosaic virusidentif…

2020

AbstractPathogens can be classified as generalists or specialists depending on their host breadth. While generalists are able to successfully infect a wide variety of host species, the host range of specialists is limited to a few related species. Even though generalists seem to gain an advantage due to their wide host range, they usually pay a cost in terms of fitness within each host species (i.e., the jack-of-all trades, master of none). On the contrary, specialists have high fitness within their own host. A highly relevant yet poorly explored question is whether generalist and specialist viruses differ in the way they interact with their host’s gene expression networks. To identify host…

GeneticsbiologyHost (biology)PotyvirusTurnip mosaic virusLocus (genetics)Genome-wide association studyPlant disease resistancebiology.organism_classificationGeneralist and specialist speciesGene
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Use of standard and setup of non conventional techniques for the elimination of viruses associated with Fig Mosaic Disease (FMD) in fig germplasm (Fi…

2017

Abstract Ficus carica L. is considered one of the oldest fruit trees in the Mediterranean basin and is widely grown and harvested for the consumption of its fruits dry and fresh. This species is affected by different virus diseases, especially by Fig mosaic disease (FMD), for which Fig leaf mottle-associated virus 1 (FLMaV-1), Fig leaf mottle-associated virus 2 (FLMaV-2), Fig mild mottling-associated virus (FMMaV), Fig mosaic virus (FMV), Fig latent virus 1 (FLV-1), Fig badnavirus 1 (FBV-1) and Fig fleck-associated virus (FFkaV) are associated. FMD is the most widespread disorder of this species, which represents a threat and a constraint for healthy fig production and germplasm exchange. T…

GermplasmCytokininsSynthetic seedRT-PCRFicussanitation.Mediterranean BasinVirusFico mosaico RT-PCR distribuzione di virus ormone incapsulamento micropropagazione seme sintetico.CultivarFig mosaic virusSanitationeducationHiguera mosaico RT-PCR la distribución de los virus hormonas encapsulación micropropagación y la semilla sintética.FigVirus distributioneducation.field_of_studybiologyfood and beveragesMicropropagationFig [Keywords]biology.organism_classificationHorticultureMicropropagationEncapsulationCaricaFig mosaic RT-PCR virus distribution cytokinins encapsulation micropropagation synthetic seed.Mosaic
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Formation of two-dimensional crystals of icosahedral RNA viruses.

2007

International audience; The formation of 2D arrays of three small icosahedral RNA viruses with known 3D structures (tomato bushy stunt virus, turnip yellow mosaic virus and bromegrass mosaic virus) has been investigated to determine the role of each component of a negative staining solution containing ammonium molybdate and polyethylene glycol. Virion association was monitored by dynamic light scattering (DLS) and virus array formation was visualised by conventional transmission electron microscopy and cryo-electron microscopy after negative staining. The structural properties of viral arrays prepared in vitro were compared to those of microcrystals found in the leaves of infected plants. A…

LightCryo-electron microscopyvirusesGeneral Physics and Astronomy02 engineering and technology[SDV.BC]Life Sciences [q-bio]/Cellular BiologyVirusPolyethylene GlycolsTombusvirus03 medical and health sciencesDynamic light scatteringSolanum lycopersicumStructural BiologyOrganometallic CompoundsScattering RadiationGeneral Materials Science[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyTymovirus030304 developmental biologyMolybdenum0303 health sciencesTurnip yellow mosaic virusbiologyMosaic virusRNA virusCell Biology021001 nanoscience & nanotechnologybiology.organism_classificationNegative stainBromovirusCrystallographyMicroscopy Electron0210 nano-technologyTomato bushy stunt virusCrystallizationMicron (Oxford, England : 1993)
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The Largest Synthetic Structure with Molecular Precision: Towards a Molecular Object

2010

Pushing the limits: A 200A - 10 Da structurally defined, linear macromolecule (PG5) has a molar mass, cross-section dimension, and cylindrical shape that are comparable to some naturally occurring objects, such as amyloid fibrils or certain plant viruses. The macromolecule is resistant against flattening out on a surface; the picture shows PG5 embracing the tobacco mosaic virus (TMV).

Macromolecular SubstancesPolymersStereochemistryviruses02 engineering and technologyMicroscopy Atomic Force010402 general chemistry01 natural sciencesCatalysisFlatteningPlant virusScattering Small AngleTobacco mosaic virus[SDV.IB.BIO]Life Sciences [q-bio]/Bioengineering/BiomaterialsComputingMilieux_MISCELLANEOUSMESH: Scattering Small Anglechemistry.chemical_classificationMESH: Microscopy Atomic ForceMolar mass010405 organic chemistryMacromolecular SubstancesGeneral ChemistryPolymerMESH: Macromolecular SubstancesGeneral Medicine021001 nanoscience & nanotechnologyAmyloid fibrilMESH: Polymers0104 chemical sciencesTobacco Mosaic ViruschemistryChemical physicsMESH: Tobacco Mosaic Virus0210 nano-technologyMacromoleculeAngewandte Chemie
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Population genetics of cucumber mosaic virus infecting medicinal, aromatic and ornamental plants from northern Italy

2012

An epidemiological survey carried at the Herb Garden of Casola Valsenio (Emilia Romagna region; Northern Italy) from 2006 to 2009 resulted in finding Cucumber mosaic virus (CMV) as the infectious agent of several ornamental, medicinal and aromatic plants. All CMV-infected plant species showed leaf symptoms followed, in some cases, by flower colour-breaking and stunting. Genetic analysis consisted in the characterization of movement protein gene of each CMV-isolate by single strand polymorphism analysis and sequencing. Phylogenetic trees identified only two isolates as member of subgroup II, while all other isolates were part of subgroup IA. This survey confirms an unexpected increment of CM…

Nonsynonymous substitutionORNAMENTAL PLANTSMolecular Sequence DataPopulationPopulation geneticsBiologyGENETIC CHARACTERIZATIONCucumovirusNucleotide diversityCucumber mosaic virusVirologyGenetic variationBotanyCluster AnalysisSelection GeneticeducationPhylogenyGeneticseducation.field_of_studySequence Homology Amino AcidPhylogenetic treeCMVGenetic Variationfood and beveragesSettore AGR/12 - Patologia VegetaleSequence Analysis DNAGeneral MedicinePlantsPlant Viral Movement ProteinsGenetics PopulationAmino Acid SubstitutionItalyGenetic structureRNA ViralOFFICINAL PLANTSCMV Population genetics
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Genetic variability and evolutionary analysis of parietaria mottle virus: role of selection and genetic exchange

2015

[EN] The genetic variability and evolution of parietaria mottle virus (PMoV) of the genus Ilarvirus was studied by analyzing nucleotide sequences of 2b and CP genes from isolates collected in different countries. Phylogenetic analysis showed that PMoV isolates clustered in different clades: one (clade I) composed of only Italian isolates and three clades (clades II-IV) including the Spanish isolates. The Greek isolate GrT-1 used in this study was in clade IV for the CP phylogenetic tree whereas it formed a separate branch in the 2b phylogenetic tree. The nucleotide sequence diversity of both the 2b and CP genes was low (0.062 +/- A 0.006 and 0.063 +/- A 0.006 for 2b and CP, respectively) bu…

Nonsynonymous substitutionRNA virusesPopulation geneticsMovementMolecular Sequence DataPopulation geneticsBiologyIlarvirusTomatoEvolution MolecularPhylogeneticsVirologyRatesGenetic variationMosaic virusSequencePRODUCCION VEGETALGenetic variabilityOriginsCladePhylogenyPlant DiseasesIlarvirusGeneticsCoat proteinPhylogenetic treeparietaria mottle virus genetic exchange evolutionary analysisGenetic VariationSettore AGR/12 - Patologia VegetaleMICROBIOLOGIAGeneral Medicinebiology.organism_classificationVirologyBiological EvolutionRecombinationParietariaCapsid Proteins
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A β-1,3 Glucan Sulfate Induces Resistance in Grapevine against Plasmopara viticola Through Priming of Defense Responses, Including HR-like Cell Death

2008

Sulfated laminarin (PS3) has been shown previously to be an elicitor of plant defense reactions in tobacco and Arabidopsis and to induce protection against tobacco mosaic virus. Here, we have demonstrated the efficiency of PS3 in protecting a susceptible grapevine cultivar (Vitis vinifera cv. Marselan) against downy mildew (Plasmopara viticola) under glasshouse conditions. This induced resistance was associated with potentiated H2O2 production at the infection sites, upregulation of defense-related genes, callose and phenol depositions, and hypersensitive response-like cell death. Interestingly, similar responses were observed following P. viticola inoculation in a tolerant grapevine hybri…

OLIGOSACCHARIDESpores0106 biological sciencesPhysiologyDEFENSE REACTIONSCyclopentanesGenes Plant01 natural sciencesMicrobiology03 medical and health scienceschemistry.chemical_compoundGene Expression Regulation PlantBotanyTobacco mosaic virusPlant defense against herbivory[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyVitisOxylipinsGlucansPlant Diseases030304 developmental biology0303 health sciencesCell DeathbiologyPOTENTIALISATIONINDUCED RESISTANCEJasmonic acidCallosefood and beveragesTobamovirusHydrogen PeroxideGeneral Medicinebiology.organism_classificationImmunity InnateUp-RegulationElicitorPlant LeavesOomyceteschemistryPlasmopara viticolaPlant StomataDowny mildewAgronomy and Crop Science010606 plant biology & botanyMolecular Plant-Microbe Interactions®
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