Ulf Olsson
Professor
X-ray scattering reveals two mechanisms of cellulose microfibril degradation by filamentous fungi
Author
Summary, in English
IMPORTANCE Cellulose degradation by fungi plays a fundamental role in terrestrial carbon cycling, but the mechanisms by which fungi cope with the crystallinity of cellulose are not fully understood. We used X-ray scattering to analyze how fungi, a commercial enzyme mix, and a Fenton reaction-generated radical alter the crystalline structure of cellulose. Our data revealed two mechanisms involved in crystalline cellulose degradation by fungi: one that results in the thinning of the cellulose fibers, resembling the enzymatic degradation of cellulose, and one that involves amorphogenesis of crystalline cellulose by yet-unknown pathways, resulting in a patchy-like degradation pattern. These results pave the way to a deeper understanding of cellulose degradation and the development of novel ways to utilize crystalline cellulose.
Department/s
- Microbial Ecology
- MEMEG
- Physical Chemistry
- Centre for Environmental and Climate Science (CEC)
Publishing year
2022
Language
English
Publication/Series
Applied and Environmental Microbiology
Volume
88
Issue
17
Document type
Article
Publisher
American Society for Microbiology
Topic
- Microbiology
Keywords
- Fenton chemistry
- Biodegradation
- Brown-rot fungus
- Cellulose
- Filamentous fungi
- Litter decomposer
- White-rot fungus
- X-ray scattering
Status
Published
Project
- The role of nitrogen availability in the regulation and evolution of cellulose decomposition mechanisms in brown-rot fungi.
Research group
- Microbial Ecology
ISBN/ISSN/Other
- ISSN: 0099-2240