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Amanda Sörensen Ristinmaa
Amanda Sörensen Ristinmaa
在 chalmers.se 的电子邮件经过验证
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Structural diversity and substrate preferences of three tannase enzymes encoded by the anaerobic bacterium Clostridium butyricum
AS Ristinmaa, T Coleman, L Cesar, AL Weinmann, S Mazurkewich, ...
Journal of Biological Chemistry 298 (4), 2022
92022
Yeasts have evolved divergent enzyme strategies to deconstruct and Metabolize Xylan
JL Ravn, AS Ristinmaa, T Coleman, J Larsbrink, C Geijer
Microbiology Spectrum 11 (3), e00245-23, 2023
22023
Resin acids play key roles in shaping microbial communities during degradation of spruce bark
AS Ristinmaa, A Tafur Rangel, A Idström, S Valenzuela, EJ Kerkhoven, ...
Nature Communications 14 (1), 8171, 2023
12023
Analyses of long-term fungal degradation of spruce bark reveals varying potential for catabolism of polysaccharides and extractive compounds
AS Ristinmaa, E Korotkova, MØ Arntzen, VGH Eijsink, C Xu, A Sundberg, ...
Bioresource Technology 402, 130768, 2024
2024
Microbial Strategies for Deconstruction of Bark Components
AS Ristinmaa
Chalmers University of Technology, 2023
2023
Fungi Employ Different Strategies to Degrade Extractives and Polysaccharides in Spruce Bark
A Ristinmaa, E Korotkova, MØ Arntzen, VH Eijsink, P Xu, A Sundberg, ...
Anna and Hasani, Merima and Larsbrink, Johan, Fungi Employ Different …, 0
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