Publications for:
pest = Tobacco mosaic virus
crop = Tobacco (Nicotiana tabacum)
for the years 2004-2022 (descending)
found 74 publications:
2022
RNA-based vaccination of plants for control of viruses
Annual Review of Virology (2022) 9, 521-548
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pestinfo wiki2020
Quantitative real-time PCR analysis of individual flue-cured tobacco seeds and seedlings reveals seed transmission of Tobacco mosaic virus
Phytopathology (2020) 110 (1), 194-205
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pestinfo wiki2018
Introns of the tobacco resistance gene
N play important roles in elicitor-responsive upregulation and efficient induction of defense responses
Journal of General Plant Pathology (2018) 84 (2), 73-84
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pestinfo wiki2017
Testing of antiviral characteristics of flammutoxin in transgenic tobacco
Journal of Plant Diseases and Protection (2017) 124 (5), 429-435
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pestinfo wikiSpicing up the
N gene: F. O. Holmes and
Tobacco mosaic virus resistance in
Capsicum and
Nicotiana plants
Phytopathology (2017) 107 (2), 148-157
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pestinfo wikiTMV induces RNA decay pathways to modulate gene silencing and disease symptoms
The Plant Journal (2017) 89 (1), 73-84
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pestinfo wiki2016
Pokeweed antiviral protein (PAP) increases plant systemic resistance to
Tobacco mosaic virus infection in
Nicotiana benthamianaEuropean Journal of Plant Pathology (2016) 146 (3), 541-549
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pestinfo wikiScreening and identification of tobacco mutants resistant to tobacco and cucumber mosaic viruses
Journal of Agricultural Science (2016) 154 (3), 487-494
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pestinfo wikiEcogenomic survey of plant viruses infecting tobacco by next generation sequencing
Virology Journal (2016) 13 (166)
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pestinfo wiki2015
Selectable marker-free co-expression of
Nicotiana rustica CN and
Nicotiana tabacum HAK1 genes improves resistance to Tobacco mosaic virus in tobacco
Functional Plant Biology (2015) 42 (8), 802-815
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pestinfo wiki2014
Catalases may play different roles in influencing resistance to virus-induced hypersensitive necrosis
Acta Phytopathologica et Entomologica Hungarica (2014) 49 (2), 189-200
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pestinfo wikiTransgenic expression of a rice riboflavin synthase gene in tobacco enhances plant growth and resistance to
Tobacco mosaic virusCanadian Journal of Plant Pathology (2014) 36 (1), 100-109
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pestinfo wikiTransgenic expression of pectin methylesterase inhibitors limits tobamovirus spread in tobacco and Arabidopsis
Molecular Plant Pathology (2014) 15 (3), 265-274
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pestinfo wikiMultiple different defense mechanisms are activated in the young transgenic tobacco plants which express the full length genome of the Tobacco mosaic virus, and are resistant against this virus
PLoS ONE (2014) 9 (9 - e107778)
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pestinfo wiki2013
One-step multiplex RT-PCR for simultaneous detection of four viruses in tobacco
Journal of Phytopathology (2013) 161 (2), 92-97
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pestinfo wikiSuppression of Tobacco mosaic virus by
Bacillus amyloliquefaciens strain Ba33
Journal of Phytopathology (2013) 161 (4), 293-294
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pestinfo wikiInhibition of virus infection by transient expression of short hairpin RNA targeting the methyltransferase domain of Tobacco mosaic virus replicase
Phytoparasitica (2013) 41 (1), 9-15
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pestinfo wikiOverexpression of a tobacco Dof transcription factor BBF1 stimulates the transcription of the Tobacco mosaic virus resistance gene
N and defense-related responses including ROS production
Plant Biotechnology (2013) 30 (1), 37-46
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pestinfo wikiInduction and maintenance of systemic acquired resistance by acibenzolar-
S-methyl in three cultivated tobacco types
Plant Disease (2013) 97 (9), 1221-1226
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pestinfo wikiGraft transmission of RNA silencing to non-transgenic scions for conferring virus resistance in tobacco
PLoS ONE (2013) 8 (5 - e63257)
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pestinfo wikiThe role of hydrogen peroxide and nitric oxide in the induction of plant-encoded RNA-dependent RNA polymerase 1 in the basal defense against Tobacco mosaic virus
PLoS ONE (2013) 8 (9 - e76090)
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pestinfo wiki2012
Rapid detection of tobacco viruses by reverse transcription loop-mediated isothermal amplification
Archives of Virology (2012) 157 (12), 2291-2298
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pestinfo wikiOverexpression of tobacco ethylene response factor
NtERF3 gene and its homologues from tobacco and rice induces hypersensitive response-like cell death in tobacco
Journal of General Plant Pathology (2012) 78 (1), 8-17
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pestinfo wikiTransgenic expression of
Tobacco mosaic virus capsid and movement proteins modulate plant basal defense and biotic stress responses in
Nicotiana tabacumMolecular Plant-Microbe Interactions (2012) 25 (10), 1370-1384
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pestinfo wikiUp-regulation of antioxidants in tobacco by low concentrations of H
2O
2 suppresses necrotic disease symptoms
Phytopathology (2012) 102 (9), 848-856
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pestinfo wiki2011
Inhibition of virus replication and symptom expression by reactive oxygen species in tobacco infected with
Tobacco mosaic virusActa Phytopathologica et Entomologica Hungarica (2011) 46 (1), 1-10
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pestinfo wikiVerapamil, a calcium channel blocker, induces systemic antiviral resistance in susceptible plants
Journal of Phytopathology (2011) 159 (2), 127-129
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pestinfo wikiEffect of 1,3;1,6-ß-d-glucan on the formation of abnormal
Tobacco mosaic virus particles in the leaves of
Nicotiana tabacum cv. Samsun
Journal of Plant Pathology (2011) 93 (1), 215-218
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pestinfo wikiLong-term protection against Tobacco mosaic virus induced by the marine alga oligo-sulphated-galactan Poly-Ga in tobacco plants
Molecular Plant Pathology (2011) 12 (5), 437-447
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pestinfo wikiThe 2b silencing suppressor of a mild strain of
Cucumber mosaic virus alone is sufficient for synergistic interaction with
Tobacco mosaic virus and induction of severe leaf malformation in 2b-transgenic tobacco plants
Molecular Plant-Microbe Interactions (2011) 24 (6), 685-693
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pestinfo wikiControl of
Tobacco mosaic virus by PopW as a result of induced resistance in tobacco under greenhouse and field conditions
Phytopathology (2011) 101 (10), 1202-1208
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pestinfo wiki2010
Agronomic performance of tobacco mosaic virus-resistant tobacco lines and hybrids possessing the resistance gene
N introgressed on different chromosomes
Crop Science (2010) 50 (4), 1339-1347
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pestinfo wikiAntimicrobial peptaibols induce defense responses and systemic resistance in tobacco against tobacco mosaic virus
FEMS Microbiology Letters (2010) 313 (2), 120-126
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pestinfo wikiSuppressive effect of abscisic acid on systemic acquired resistance in tobacco plants
Journal of General Plant Pathology (2010) 76 (2), 161-167
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pestinfo wikiAnalyses of the
cis-regulatory regions responsible for the transcriptional activation of the
N resistance gene by
Tobacco mosaic virusJournal of Phytopathology (2010) 158 (11-12), 826-828
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pestinfo wikiEffect of the disodium salt of cyclopentene-ß-ß'-triketone on the development of infections induced by TMV in the leaves of hypersensitive and susceptible tobacco plants
Journal of Plant Diseases and Protection (2010) 117 (3), 97-101
pestinfo wikiEnhanced glutathione metabolism is correlated with sulfur-induced resistance in
Tobacco mosaic virus-infected genetically susceptible
Nicotiana tabacum plants
Molecular Plant-Microbe Interactions (2010) 23 (11), 1448-1459
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pestinfo wikiAn h-type thioredoxin functions in tobacco defense responses to two species of viruses and an abiotic oxidative stress
Molecular Plant-Microbe Interactions (2010) 23 (11), 1470-1485
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pestinfo wikiSilencing of WIPK and SIPK mitogen-activated protein kinases reduces
Tobacco mosaic virus accumulation but permits systemic viral movement in tobacco possessing the
N resistance gene
Molecular Plant-Microbe Interactions (2010) 23 (8), 1032-1041
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pestinfo wiki2009
Induction of RNA-mediated multiple virus resistance to
Potato virus Y,
Tobacco mosaic virus and
Cucumber mosaic virusJournal of Phytopathology (2009) 157 (2), 101-107
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pestinfo wikiExtracellular ATP is a regulator of pathogen defence in plants
The Plant Journal (2009) 60 (3), 436-448
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pestinfo wiki2008
Effect of ubiquinone 50 and viral infection on phytohemagglutinin activity in development of induced resistance in tobacco plants
Biology Bulletin (2008) 35 (4), 380-384
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pestinfo wikiTobacco mosaic virus 126-kDa protein increases the susceptibility of
Nicotiana tabacum to other viruses and its dosage affects virus-induced gene silencing
Molecular Plant-Microbe Interactions (2008) 21 (12), 1539-1548
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pestinfo wikiNTH201, a novel class II KNOTTED1-like protein, facilitates the cell-to-cell movement of
Tobacco mosaic virus in tobacco
Molecular Plant-Microbe Interactions (2008) 21 (5), 586-596
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pestinfo wikiAntiphytoviral activity of bruceine-D from
Brucea javanica seeds
Pest Management Science (2008) 64 (2), 191-196
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pestinfo wikiThe association of
Tobacco mosaic virus with green spot of cured wrapper tobacco leaves
Plant Disease (2008) 92 (1), 37-41
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pestinfo wiki2007
Lipoxygenase and glutathione peroxidase activity in tobacco leaves inoculated with tobacco mosaic virus
Acta Phytopathologica et Entomologica Hungarica (2007) 42 (2), 197-207
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pestinfo wikiEffects of oligochitosans on tobacco cells and role of endogenous nitric oxide burst in the resistance of tobacco to
Tobacco mosaic virusJournal of Plant Pathology (2007) 89 (1), 55-65
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pestinfo wikiSuppression of infectious TMV genomes expressed in young transgenic tobacco plants
Molecular Plant-Microbe Interactions (2007) 20 (12), 1489-1494
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pestinfo wikiCladosporium fulvum CfHNNI1 induces hypersensitive necrosis, defence gene expression and disease resistance in both host and nonhost plants
Plant Molecular Biology (2007) 64 (1-2), 89-101
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pestinfo wikiThe negative influence of
N -mediated TMV resistance on yield in tobacco: linkage drag versus pleiotropy
Theoretical and Applied Genetics (2007) 115 (2), 169-178
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pestinfo wiki2006
Effect of tobacco mosaic virus strains on the ultrastructure of tobacco leaf parenchymal cells
Biology Bulletin (2006) 33 (4), 409-415
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pestinfo wikiEffects of allopurinol on green fluorescent protein-expressing
Tobacco mosaic virus in
Nicotiana tabacumJournal of Plant Pathology (2006) 88 (3, Special Issue), S25
pestinfo wikiNtLRP1, a tobacco leucine-rich repeat gene with a possible role as a modulator of the hypersensitive response
Molecular Plant-Microbe Interactions (2006) 19 (7), 747-757
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pestinfo wikiThe phenylalanine pathway is the main route of salicylic acid biosynthesis in
Tobacco mosaic virus-infected tobacco leaves
Plant Biotechnology (2006) 23 (4), 395-398
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pestinfo wikiDirect interaction between the tobacco mosaic virus helicase domain and the ATP-bound resistance protein, N factor during the hypersensitive response in tobacco plants
Plant Molecular Biology (2006) 61 (1-2), 31-45
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pestinfo wiki2005
Resistance to
Tobacco mosaic virus and
Botrytis cinerea in tobacco transformed with complementary DNA encoding an inhibitor of viral replication-like protein
Annals of Applied Biology (2005) 147 (1), 89-100
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pestinfo wikiMolecular and genetic characterization of
Nicotiana glutinosa L. chromosome segments in
Tobacco mosaic virus-resistant tobacco accessions
Crop Science (2005) 45 (6), 2355-2362
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pestinfo wikiInvolvement of the small GTPase Rac in the defense responses of tobacco to pathogens
Molecular Plant-Microbe Interactions (2005) 18 (2), 116-124
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pestinfo wikiIsolation of pathogenesis-related proteins from TMV-infected tobacco and their influence on infectivity of TMV
Plant Protection Science (2005) 41 (2), p. 52
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pestinfo wikiA single reverse mutation in the 126/183-kDa replicase gene of the attenuated tomato strain V-69 of tobacco mosaic virus increases the virus pathogenicity
Russian Journal of Genetics (2005) 41 (1), 32-39
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pestinfo wiki2004
Establishment of acquired resistance confers reduced levels of superoxide and hydrogen peroxide in TMV-infected tobacco leaves
Acta Phytopathologica et Entomologica Hungarica (2004) 39 (4), 347-359
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pestinfo wikiAntisense expression of a omega-3 fatty acid desaturase gene in tobacco plants enhances susceptibility against pathogens
Canadian Journal of Botany - Revue Canadienne de Botanique (2004) 82 (3), 297-303
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pestinfo wikiA survey of tobacco viruses in tobacco crops and native flora in Greece
European Journal of Plant Pathology (2004) 110 (10), 1011-1023
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pestinfo wikiIdentification and characterization of a novel tobacco mosaic virus resistance N gene homologue in
Nicotiana tabacum plants
Functional Plant Biology (2004) 31 (2), 149-158
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pestinfo wikiMembers of 14-3-3 protein isoforms interacting with the resistance gene product N and the elicitor of
Tobacco mosaic virusJournal of General Plant Pathology (2004) 70 (4), 221-231
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pestinfo wikiInteraction between the helicase domain of the tobacco mosaic virus replicase and a tobacco arginine decarboxylase
Journal of General Plant Pathology (2004) 70 (6), 353-358
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pestinfo wikiOverexpression of
NtERF5, a new member of the tobacco ethylene response transcription factor family enhances resistance to
Tobacco mosaic virusMolecular Plant-Microbe Interactions (2004) 17 (10), 1162-1171
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pestinfo wikiOver-expression of a scopoletin glucosyltransferase in
Nicotiana tabacum leads to precocious lesion formation during the hypersensitive response to tobacco mosaic virus but does not affect virus resistance
Plant Molecular Biology (2004) 54 (1), 137-146
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pestinfo wikiIdentification of tobacco HIN1 and two closely related genes as spermine-responsive genes and their differential expression during the tobacco mosaic virus-induced hypersensitive response and during leaf- and flower-senescence
Plant Molecular Biology (2004) 54 (4), 613-622
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pestinfo wikiAnalysis of the proteins in the leaves of transgenic tobacco plants expressing double-stranded RNA upon viral infection
Russian Journal of Genetics (2004) 40 (4), 425-430
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pestinfo wikiInvolvement of MEK1 MAPKK, NTF6 MAPK, WRKY/MYB transcription factors,
COI1 and
CTR1 in
N-mediated resistance to tobacco mosaic virus
The Plant Journal (2004) 38 (5), 800-809
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pestinfo wikiEffect of kappa/beta-carrageenan from red alga
Tichocarpus crinitus (Tichocarpaceae) on infection of detached tobacco leaves with tobacco mosaic virus
Zeitschrift für Pflanzenkrankheiten und Pflanzenschutz - Journal of Plant Diseases and Protection (2004) 111 (2), 165-172
pestinfo wikiApplication of fluorescent pseudomonads in combination with acibenzolar-S-methyl induces disease resistance in tomato and tobacco
Zeitschrift für Pflanzenkrankheiten und Pflanzenschutz - Journal of Plant Diseases and Protection (2004) 111 (5), 494-505
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