Maitake, Hen of the Woods · 2025 · Research Article
High relevanceTwo-stage wood decay by Grifola frondosa.
Grifola frondosa
Key points
- In nature, only white-rot fungi can completely decompose wood biomass in the environmental carbon cycle
- However, their degradation strategy is still unclear
- Despite many studies on the lab-scale wood-decay process, investigations on the open-field process have been limited by their difficulty
- Here, we aimed to elucidate the degradation strategy of white-rot fungi in nature by monitoring the chemical composition changes of logs exposed to the white-rot fungus, Grifola frondosa, over 4 y of cultivation using Fourier transform infrared spectroscopy
- Grifola frondosa began to decompose lignin and deacetylate hemicellulose in the first 2 y and then degraded polysaccharides in the next 1 y
- Thus, our study revealed that G. frondosa decayed wood in a repetitive two-stage process: lignin and polysaccharide degradation
Metadata-grounded summary
Citation abstract
In nature, only white-rot fungi can completely decompose wood biomass in the environmental carbon cycle. However, their degradation strategy is still unclear. Despite many studies on the lab-scale wood-decay process, investigations on the open-field process have been limited by their difficulty. Here, we aimed to elucidate the degradation strategy of white-rot fungi in nature by monitoring the chemical composition changes of logs exposed to the white-rot fungus, Grifola frondosa, over 4 y of cultivation using Fourier transform infrared spectroscopy. Grifola frondosa began to decompose lignin and deacetylate hemicellulose in the first 2 y and then degraded polysaccharides in the next 1 y. Finally, lignin decomposition recurred after the third year. Thus, our study revealed that G. frondosa decayed wood in a repetitive two-stage process: lignin and polysaccharide degradation. The switching cycle may promote efficient degradation.
Citation
Motoda T, Chen FC, Ando D (2025). Two-stage wood decay by Grifola frondosa. Mycoscience https://doi.org/10.47371/mycosci.2024.10.006 PMID: 40672142
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