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Maitake, Hen of the Woods · 2023 · Research Article

High relevance

Preparation and structural analysis of fucomannogalactan and β-1,6-glucan from Grifola frondosa mycelium.

Grifola frondosa

Immune support
SpeciesMaitake, Hen of the Woods
JournalFrontiers in chemistry
Year2023

Key points

  • Introduction: Polysaccharides, key components present in Grifola frondosa, can be divided into those derived from fruiting bodies, mycelium, and fermentation broth based on their source
  • The structure of G. frondosa fruiting body-derived polysaccharides has been fully characterized
  • Methods: In this study, we obtained mycelia from G. frondosa by liquid fermentation and extracted them with water and alkaline solution
  • Results and discussion: Structural analysis showed that two neutral fractions (WGFP-N-a and AGFP-N-a 1 ) have a common backbone composed of α-1,6-D-Me-Gal p and α-1,6-D-Gal p that were substituted at O-2 by 1,2-Man p, α-1,3-L-Fuc p, and α-T-D-Man p and thus are identified as fucomannogalactans
  • WGFP-A-a, AGFP-A-b, and AGFP-A-c are β-1,6-glucans with different molecular weights and are branched with β-1,3-D-Glc p and T-D-Glc p at the O-3 of Glc
  • Our results provide important structural information about G. frondosa mycelium-derived polysaccharides and provide the basis for their further development and application

Metadata-grounded summary

Citation abstract

Introduction: Polysaccharides, key components present in Grifola frondosa, can be divided into those derived from fruiting bodies, mycelium, and fermentation broth based on their source. The structure of G. frondosa fruiting body-derived polysaccharides has been fully characterized. However, the structure of G. frondosa mycelium-derived polysaccharides remains to be elucidated. Methods: In this study, we obtained mycelia from G. frondosa by liquid fermentation and extracted them with water and alkaline solution. Then, the mycelia were isolated and purified to obtain homogeneity and systematically characterized by methylation and FT infrared (FT-IR) and nuclear magnetic resonance (NMR) spectroscopy. Results and discussion: Structural analysis showed that two neutral fractions (WGFP-N-a and AGFP-N-a 1 ) have a common backbone composed of α-1,6-D-Me-Gal p and α-1,6-D-Gal p that were substituted at O-2 by 1,2-Man p, α-1,3-L-Fuc p, and α-T-D-Man p and thus are identified as fucomannogalactans. WGFP-A-a, AGFP-A-b, and AGFP-A-c are β-1,6-glucans with different molecular weights and are branched with β-1,3-D-Glc p and T-D-Glc p at the O-3 of Glc. Our results provide important structural information about G. frondosa mycelium-derived polysaccharides and provide the basis for their further development and application.

Citation

Geng J, Wang G, Guo J, Han X, Qu Y, Zhou Y, et al. (2023). Preparation and structural analysis of fucomannogalactan and β-1,6-glucan from Grifola frondosa mycelium. Frontiers in chemistry https://doi.org/10.3389/fchem.2023.1227288 PMID: 37608863

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