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Dive into the research topics where Orsolya Viczián is active.

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Featured researches published by Orsolya Viczián.


International Journal of Molecular Sciences | 2018

Signals of Systemic Immunity in Plants: Progress and Open Questions

Attila L. Ádám; Zoltán Nagy; György Kátay; Emese Mergenthaler; Orsolya Viczián

Systemic acquired resistance (SAR) is a defence mechanism that induces protection against a wide range of pathogens in distant, pathogen-free parts of plants after a primary inoculation. Multiple mobile compounds were identified as putative SAR signals or important factors for influencing movement of SAR signalling elements in Arabidopsis and tobacco. These include compounds with very different chemical structures like lipid transfer protein DIR1 (DEFECTIVE IN INDUCED RESISTANCE1), methyl salicylate (MeSA), dehydroabietinal (DA), azelaic acid (AzA), glycerol-3-phosphate dependent factor (G3P) and the lysine catabolite pipecolic acid (Pip). Genetic studies with different SAR-deficient mutants and silenced lines support the idea that some of these compounds (MeSA, DIR1 and G3P) are activated only when SAR is induced in darkness. In addition, although AzA doubled in phloem exudate of tobacco mosaic virus (TMV) infected tobacco leaves, external AzA treatment could not induce resistance neither to viral nor bacterial pathogens, independent of light conditions. Besides light intensity and timing of light exposition after primary inoculation, spectral distribution of light could also influence the SAR induction capacity. Recent data indicated that TMV and CMV (cucumber mosaic virus) infection in tobacco, like bacteria in Arabidopsis, caused massive accumulation of Pip. Treatment of tobacco leaves with Pip in the light, caused a drastic and significant local and systemic decrease in lesion size of TMV infection. Moreover, two very recent papers, added in proof, demonstrated the role of FMO1 (FLAVIN-DEPENDENT-MONOOXYGENASE1) in conversion of Pip to N-hydroxypipecolic acid (NHP). NHP systemically accumulates after microbial attack and acts as a potent inducer of plant immunity to bacterial and oomycete pathogens in Arabidopsis. These results argue for the pivotal role of Pip and NHP as an important signal compound of SAR response in different plants against different pathogens.


Acta Horticulturae | 2001

Isolation and expression of an immunodominant membrane protein gene of the esfy phytoplasma for antiserum production

E. Mergenthaler; Orsolya Viczián; M. Fodor; S. Süle


Acta Phytopathologica Et Entomologica Hungarica | 1998

Detection and identification of stolbur phytoplasma in Hungary by PCR and RFLP methods.

Orsolya Viczián; S. Süle; R. Gáborjányi


Acta Phytopathologica Et Entomologica Hungarica | 1999

Cabbage infected with phytoplasma from the aster yellows group in Hungary

M. Fodor; Orsolya Viczián; E. Mergenthaler; S. Süle


Acta Phytopathologica Et Entomologica Hungarica | 2014

Catalases may play different roles in influencing resistance to virus-induced hypersensitive necrosis

Orsolya Viczián; András Künstler; Y. M. Hafez; Lóránt Király


Acta Phytopathologica Et Entomologica Hungarica | 2014

Heat induced susceptibility of barley lines with various types of resistance genes to powdery mildew

Balázs Barna; Borbála D. Harrach; Orsolya Viczián; József Fodor


Acta Phytopathologica Et Entomologica Hungarica | 2005

Expression of the tuf Gene of “Candidatus Phytoplasma mali”in Escherichia coli

Orsolya Viczián; E. Mergenthaler; S. Süle


publisher | None

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Journal of Plant Pathology | 2018

First report of aster yellows phytoplasma infection of marigold plants in Hungary

Orsolya Viczián; Emese Kiss; Mária Szabó; Emese Mergenthaler


Archive | 2017

Survey on the occurrence and infection status of Cacopsylla pruni, vector of European stone fruit yellows in Hungary

Emese Mergenthaler; Balázs Kiss; Emese Kiss; Orsolya Viczián

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Emese Mergenthaler

Hungarian Academy of Sciences

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S. Süle

Hungarian Academy of Sciences

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E. Mergenthaler

Hungarian Academy of Sciences

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Emese Kiss

Hungarian Academy of Sciences

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József Fodor

Hungarian Academy of Sciences

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Lóránt Király

Hungarian Academy of Sciences

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András Künstler

Hungarian Academy of Sciences

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M. Fodor

Hungarian Academy of Sciences

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Balázs Barna

Hungarian Academy of Sciences

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