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.
Domonkos, D.,
Papp, L. A.,
Miklós, I.,
Ács-Szabó, L.,
Kádas, J.,
Kiss, B.:
Economic Impact of Antibiotic-Resistant Streptococcus pneumoniae: Quantifying the Healthcare Burden Associated with High-Prevalence Drug-Resistant Isolates.
European Journal of Health Economics. [megjelenés alatt], 1-33, 2026.
D1
Economics, Econometrics and Finance (miscellaneous)
(2025)
Q1
Health Policy
(2025)
3.
Takács, S.,
Bodnár, A.,
Papp, L. A.,
Ács-Szabó, L.,
Domonkos, D.,
Csoma, H.,
Miklós, I.:
Impact of Schizosaccharomyces species on apple juice fermentation: High glycerol production, malic acid degradation, and species-specific aroma profiles.
Int. J. Food Microbiol. 461, 111991-112003, (article identifier: 111991), 2026.
Molnár, M.,
Ács-Szabó, L.,
Papp, L. A.,
Cziáky, Z.,
Miklós, I.:
Insight into the Yeast Diversity of Hungarian Honeys.
Diversity (Basel). 17 (5), 1-13, (article identifier: 325), 2025.
Vig, I.,
Ács-Szabó, L.,
Benkő, Z.,
Bagelova, P. S.,
Papp, L. A.,
Gregan, J.,
Miklós, I.:
The BUD31 Homologous Gene in Schizosaccharomyces pombe Is Evolutionarily Conserved and Can Be Linked to Cellular Processes Regulated by the TOR Pathway.
Cells. 14 (21), 1-23, (article identifier: 1736), 2025.
Batta, G.,
Papp, L. A.,
Ács-Szabó, L.,
Adácsi, C.,
Pusztahelyi, T.,
Pócsi, I.,
Miklós, I.:
A Schizosaccharomyces japonicus képes a Fusarium graminearum gátlására és olyan enzimek termelésére, amelyek részt vehetnek a mikotoxinok elleni toleranciában és a biológiai detoxifikációban = Schizosaccharomyces japonicus can inhibit the growth of Fusarium grami- nearum and produce proteins that may be involved in mycotoxin tolerance and biological detoxification.
In: VII. Magyar Mikológiai Konferencia : Absztraktkötet. Szerk.:: Dima Bálint; Papp Viktor, MATE, Magyar Mikológiai Társaság, 2024, 118-119, 2024. ISBN: 9789636230982(pdf)
Batta, G.,
Papp, L. A.,
Ács-Szabó, L.,
Adácsi, C.,
Pusztahelyi, T.,
Pócsi, I.,
Miklós, I.:
Élesztőgomba-fuzárium együttes tenyészetek vizsgálata = Examination of yeast-Fusarium co-cultures.
In: VII. Magyar Mikológiai Konferencia : Absztraktkötet. Szerk.:: Dima Bálint; Papp Viktor, MATE, Magyar Mikológiai Társaság, 2024, 120-121, 2024. ISBN: 9789636230982(pdf)
Ács-Szabó, L.,
Papp, L. A.,
Miklós, I.:
Understanding the molecular mechanisms of human diseases: the benefits of fission yeasts.
Microb. Cell. 11 (1), 288-311, 2024.
Q1
Biochemistry, Genetics and Molecular Biology (miscellaneous)
Q2
Cell Biology
Q2
Genetics
Q1
Microbiology
Q2
Molecular Biology
D1
Parasitology
2023
14.
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.
Ács-Szabó, L.,
Papp, L. A.,
Takács, S.,
Miklós, I.:
Disruption of the Schizosaccharomyces japonicus lig4 Disturbs Several Cellular Processes and Leads to a Pleiotropic Phenotype.
J. Fungi. 9 (5), 1-16, (article identifier: 550), 2023.
Vig, I.,
Ács-Szabó, L.,
Benkő, Z.,
Papp, L. A.,
Sipiczki, M.,
Miklós, I.:
Analysis of the cwf14 gene encoding the G10 protein involved in splicing in Schizosaccharomyces pombe.
In: A Magyar Mikrobiológiai Társaság 2022. évi Nagygyűlése és a XV. Fermentációs Kollokvium : Absztraktfüzet, [s.n.], Kecskemét, 53, 2022.
Q1
Agricultural and Biological Sciences (miscellaneous)
Q3
Ecological Modeling
Q2
Ecology
Q2
Nature and Landscape Conservation
20.
Vig, I.,
Ács-Szabó, L.,
Benkő, Z.,
Papp, L. A.,
Sipiczki, M.,
Miklós, I.:
The Schizosaccharomyces pombe cwf14 gene is evolutionarily conserved and involved in the TOR pathway.
In: Biotechnology at the University of Debr ecen - 2022 International Symposium : Abstract Book, Debreceni Egyetem, Printart-Press Kft., Debrecen, 45, 2022. ISBN: 9789634904687
Papp, L. A.,
Ács-Szabó, L.,
Póliska, S.,
Miklós, I.:
A modified culture medium and hyphae isolation method can increase quality of the RNA extracted from mycelia of a dimorphic fungal species.
Curr. Genet. 67 (5), 823-830, 2021.
Ács-Szabó, L.,
Papp, L. A.,
Sipiczki, M.,
Miklós, I.:
Genome Comparisons of the Fission Yeasts Reveal Ancient Collinear Loci Maintained by Natural Selection.
J. Fungi. 7 (10), 1-26, (article identifier: 864), 2021.
Papp, L. A.,
Ács-Szabó, L.,
Batta, G.,
Miklós, I.:
Molecular and comparative genomic analyses reveal evolutionarily conserved and unique features of the Schizosaccharomyces japonicus mycelial growth and the underlying genomic changes.
Curr. Genet. 67 (6), 953-968, 2021.
Csoma, H.,
Ács-Szabó, L.,
Papp, L. A.,
Sipiczki, M.:
Application of different markers and data-analysis tools to the examination of biodiversity can lead to different results: a case study with Starmerella bacillaris (synonym Candida zemplinina) strains.
FEMS Yeast Res. 18 (5), 1-12, (article identifier: 021), 2018.
Ács-Szabó, L.,
Papp, L. A.,
Antunovics, Z.,
Sipiczki, M.,
Miklós, I.:
Assembly of Schizosaccharomyces cryophilus chromosomes and their comparative genomic analyses revealed principles of genome evolution of the haploid fission yeasts.
Sci Rep. 8 (1), 1-12, (article identifier: 14629), 2018.