The library will be closed between August 10, 2026 and August 16, 2026. During this period, it will be possible to upload publications, but all other services will be suspended.
Szűcs, Z.,
Plaszkó, T.,
Bódor, E.,
Csoma, H.,
Ács-Szabó, L.,
Kiss-Szikszai, A.,
Vasas, G.,
Gonda, S.:
Antifungal Activity of Glucosinolate-Derived Nitriles and Their Synergistic Activity with Glucosinolate-Derived Isothiocyanates Distinguishes Various Taxa of Brassicaceae Endophytes and Soil Fungi.
Plants-Basel. 12 (14), 1-13, (article identifier: 2741), 2023.
Plaszkó, T.,
Szűcs, Z.,
Vasas, G.,
Gonda, S.:
Interactions of fungi with non-isothiocyanate products of the plant glucosinolate pathway: A review on product formation, antifungal activity, mode of action and biotransformation.
Phytochemistry. 200, 1-33, (article identifier: 113245), 2022.
Plaszkó, T.,
Szűcs, Z.,
Vasas, G.,
Gonda, S.:
Effects of Glucosinolate-Derived Isothiocyanates on Fungi: A Comprehensive Review on Direct Effects, Mechanisms, Structure-Activity Relationship Data and Possible Agricultural Applications.
J. Fungi. 7 (7), 1-38, (article identifier: 539), 2021.
Szűcs, Z.,
Plaszkó, T.,
Cziáky, Z.,
Kiss-Szikszai, A.,
Emri, T.,
Bertóti, R.,
Sinka, L. T.,
Vasas, G.,
Gonda, S.:
Endophytic fungi from the roots of horseradish (Armoracia rusticana) and their interactions with the defensive metabolites of the glucosinolate - myrosinase - isothiocyanate system.
BMC Plant Biol. 18 (1), 1-15, 2018.
Deli, J.,
Gonda, S.,
Nagy, L.,
Szabó, I.,
Gulyás-Fekete, G.,
Agócs, A.,
Márton, K.,
Vasas, G.:
Carotenoid composition of three bloom-forming algae species.
Food Res. Int. 65, 215-223, 2014.
Gonda, S.,
Kiss-Szikszai, A.,
Szűcs, Z.,
Máthé, C.,
Vasas, G.:
Effects of N source concentration and NH4+/NO3- ratio on phenylethanoid glycoside pattern in tissue cultures of Plantago lanceolata L.: A metabolomics driven full-factorial experiment with LC-ESI-MS3.
Phytochemistry. 106, 44-54, 2014.
Vasas, G.,
Surányi, G.,
Bácsi, I.,
Mikóné Hamvas, M.,
Máthé, C.,
Gonda, S.,
Borbély, G.:
Alteration of Cylindrospermopsin Content of Aphanizomenon ovalisporum (Cyanobacteria, Nostocales) due to Step-Down from Combined Nitrogen to Dinitrogen.
Adv. Microbiol. 3 (8), 557-564, 2013.