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Az antivirális RNS csendesítés molekuláris mechanizmusainak vizsgálata Solanaceae növényekben
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Ezen az oldalon az NKFI Elektronikus Pályázatkezelő Rendszerében nyilvánosságra hozott projektjeit tekintheti meg.
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Alessandra Lucioli, Raffaela Tavazza, Simona Baima, Károly Fátyol, József Burgyán, Mario Tavazza: CRISPR-Cas9 Targeting of the eIF4E1 Gene Extends the Potato Virus Y Resistance Spectrum of the Solanum tuberosum L. cv. Desirée, Frontiers in Microbiology, 2022 | Yunjing Wang, Qian Gong, Yuyao Wu, Fan Huang, Asigul Ismayil, Danfeng Zhang, Huangai Li, Hanqing Gu, Márta Ludman, Károly Fátyol, Yijun Qi, Keiko Yoshioka, Linda Hanley-Bowdoin, Yiguo Hong, Yule Liu: A calmodulin-binding transcription factor links calcium signaling to antiviral RNAi defense in plants, Cell Host & Microbe, 2021 | Ludman Márta, Fátyol Károly: TARGETED INACTIVATION OF THE AGO1 HOMEOLOGS OF NICOTIANA BENTHAMIANA REVEALS THEIR DISTINCT ROLES IN DEVELOPMENT AND ANTIVIRAL DEFENSE, NEW PHYTOLOGIST, 2021 | Angel Y.S. Chen, James H.C. Peng, MaryLou Polek, Tongyan Tian, Ludman Márta, Fátyol Károly, James C.K. Ng: Comparative analysis identifies amino acids critical for citrus tristeza virus (T36CA) encoded proteins involved in suppression of RNA silencing and differential systemic infection in two plant species, MOLECULAR PLANT PATHOLOGY, 2021 | Fátyol Károly, Fekete Anna Katalin, Ludman Márta: Double-Stranded-RNA-Binding Protein 2 Participates in Antiviral Defense, Journal of Virology, 2020 May 18;94(11):e00017-20, 2020 | Ludman Márta, Fátyol Károly: TARGETED INACTIVATION OF THE AGO1 HOMEOLOGS OF NICOTIANA BENTHAMIANA REVEALS THEIR DISTINCT ROLES IN DEVELOPMENT AND ANTIVIRAL DEFENSE, New Phytologist, 2020 | Angel Y.S. Chen, James H.C. Peng, MaryLou Polek, Tongyan Tian, Márta Ludman, Károly Fátyol, and James C.K. Ng: Comparative analysis identifies amino acids critical for citrus tristeza virus (T36CA) encoded proteins involved in suppression of RNA silencing and differential systemic, Molecular Plant Pathology, 2020 | Yunjing Wang, Qian Gong, Yuyao Wu, Fan Huang, Asigul Ismayil, Danfeng Zhang, Huangai Li, Hanqing Gu, Márta Ludman, Károly Fátyol, Yijun Qi, Keiko Yoshioka, Linda Hanley-Bowdoin, Yiguo Hong, Yule Liu: A calmodulin-binding transcription factor links calcium signaling to antiviral RNAi defense in plants, Cell Host & Microbe, 2021 | Ludman Marta, Fatyol Karoly: The virological model plant, Nicotiana benthamiana expresses a single functional RDR6 homeolog, VIROLOGY 537: pp. 143-148., 2019 | Fátyol Károly: Involvement of RNA binding proteins in plant antiviral responses, In: Buday, László; Erdélyi, Miklós; Kovács, Mihály; Mihály, József; Varga, Máté; Virág, László; Hohol, Róbert (szerk.) Porgramme and Books of abstracts - Hungarian Molecular Life Sciences 2019, Diamond Congress Kft. (2019) p. O16., 2019 | Dinesh Babu Paudel, Basudev Ghoshal, Sushma Jossey, Márta Ludman, Károly Fátyol, Hélène Sanfacon: Expression and antiviral function of ARGONAUTE 2 in Nicotiana benthamiana plants infected with two isolates of tomato ringspot virus with varying degrees of virulence, VIROLOGY 524: (1) pp. 127-139., 2018 | Ludman Márta, Fátyol Károly: A CRISPR/Cas9 rendszer alkalmazása a növényi RNS csendesítés komponenseinek vizsgálatára, In: Genetikai Műhelyek Magyarországon XVII. Minikonferencia, Szeged (2018), (2018) p. 1., 2018 | Dinesh Babu Paudel, Basudev Ghoshal, Sushma Jossey, Márta Ludman, Károly Fátyol, Hélène Sanfacon: Expression and antiviral function of ARGONAUTE 2 in Nicotiana benthamiana plants infected with two isolates of tomato ringspot virus with varying degrees of virulence, Virology, 2018 | Fátyol Károly, Burgyán József: Establishment of an ARGONAUTE reporter system, Plant Argonaute Proteins : Methods and Protocols - Methods in Molecular Biology, Springer-New York, 2017 | Ludman Márta, Burgyán József, Fátyol Károly: Crispr/Cas9 Mediated Inactivation of Argonaute 2 Reveals its Differential Involvement in Antiviral Responses., SCIENTIFIC REPORTS 7:(1) p. 1010., 2017 | Ludman Márta, Fátyol Károly: A CRISPR/Cas9 rendszer alkalmazása a növényi RNS csendesítés komponenseinek vizsgálatára, Fiatal RNS kutatók fóruma - Magyar RNS Szalonok, 2018 | Ludman Márta, Fátyol Károly: A CRISPR/Cas9 rendszer alkalmazása a növényi RNS csendesítés komponenseinek vizsgálatára, "GENETIKAI MŰHELYEK MAGYARORSZÁGON" XVII. Minikonferencia, 2018 | Fátyol Károly: Involvement of RNA binding proteins in plant antiviral responses, Porgramme and Books of abstracts - Hungarian Molecular Life Sciences 2019, 2019 | Ludman Márta, Fátyol Károly: The virological model plant, Nicotiana benthamiana expresses a single functional RDR6 homeolog., Virology, 2019 | Fátyol Károly: In Vivo Reporter System for miRNA-Mediated RNA Silencing, Methods in Molecular Biology, Springer-New York, 2020;2166:431-450, 2020 | Fátyol Károly, Fekete Anna Katalin, Ludman Márta: Double-Stranded-RNA-Binding Protein 2 Participates in Antiviral Defense, Journal of Virology, 2020 May 18;94(11):e00017-20, 2020 | Fabio Pasin Hongying Shan 6 Beatriz García Maren Müller David San León Márta Ludman David H. Fresno Károly Fátyol Sergi Munné-Bosch Guillermo Rodrigo Juan Antonio García: Abscisic Acid Connects Phytohormone Signaling with RNA Metabolic Pathways and Promotes an Antiviral Response that Is Evaded by a Self-Controlled RNA Virus, Plant Communications, Volume 1, Issue 5, 14 September 2020, 100099, 2020 | Ludman Márta, Fátyol Károly: TARGETED INACTIVATION OF THE AGO1 HOMEOLOGS OF NICOTIANA BENTHAMIANA REVEALS THEIR DISTINCT ROLES IN DEVELOPMENT AND ANTIVIRAL DEFENSE, New Phytologist, 2020 | Angel Y.S. Chen, James H.C. Peng, MaryLou Polek, Tongyan Tian, Márta Ludman, Károly Fátyol, and James C.K. Ng: Comparative analysis identifies amino acids critical for citrus tristeza virus (T36CA) encoded proteins involved in suppression of RNA silencing and differential systemic, Molecular Plant Pathology, 2020 | Ludman Márta, Burgyán József, Fátyol Károly: CRISPR/Cas9 mediated inactivation of Argonaute 2 reveals its differntial involvement in antiviral responses, In: Zsuzsanna, Heiszler; Róbert, Hohol; Nóra, Éles-Etele (szerk.) Hungarian Molecular Life Sciences 2017, Diamond Congress Kft. (2017) pp. 63-63., 2017 |
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