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Applied Microbiology and Biotechnology|May 22, 2022
Use of red, far-red, and near-infrared light in imaging of yeasts and filamentous fungiIstván Pócsi, Zsuzsa M Szigeti, Tamás Emri, et al.
Journal of Microbiology (Seoul, Korea)|November 6, 2012
Antifungal activity of extracellular hydrolases produced by autolysing Aspergillus nidulans culturesMelinda Szilágyi, Fruzsina Anton, Katalin Forgács, et al.
Research in Microbiology|July 21, 2022
Effect of the combinatorial iron-chelation and oxidative stress on the growth of Aspergillus speciesTamás Emri, Veronika M Sümegi-Győri, Krisztián Páll, et al.
Journal of Fungi (Basel, Switzerland)|December 27, 2024
Resynthesis of Damaged Fe-S Cluster Proteins Protects Aspergillus fumigatus Against Oxidative Stress in the Absence of Mn-Superoxide DismutaseKlaudia Pákozdi, Károly Antal, Kitti Pázmándi, et al.
Bioresource Technology|May 20, 2011
Trehalose overproduction affects the stress tolerance of Kluyveromyces marxianus ambiguouslyEva Erdei, Mónika Molnár, Gyöngyi Gyémánt, et al.
Acta Microbiologica Et Immunologica Hungarica|March 7, 2017
Study on the glutathione metabolism of the filamentous fungus Aspergillus nidulansFruzsina Bakti, Anita Király, Erzsébet Orosz, et al.
Journal of Fungi (Basel, Switzerland)|January 20, 2022
Strategies Shaping the Transcription of Carbohydrate-Active Enzyme Genes in Aspergillus nidulansBarnabás Cs Gila, Károly Antal, Zsuzsanna Birkó, et al.
Journal of Basic Microbiology|May 15, 2003
Chromate tolerance caused by reduced hydroxyl radical production and decreased glutathione reductase activity in Schizosaccharomyces pombeZoltán Gazdag, István Pócsi, József Belágyi, et al.
Journal of Basic Microbiology|November 21, 2002
Chromate sensitivity in fission yeast is caused by increased glutathione reductase activity and peroxide overproductionMiklós Pesti, Zoltán Gazdag, Tamás Emri, et al.
Fungal Biology|April 4, 2024
Total transcriptome response for tyrosol exposure in Aspergillus nidulansÁgnes Jakab, Kinga Csillag, Károly Antal, et al.
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