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Mesima, Sanghwang · 2026 · Journal Article

Medium relevance

Green mechanical and microbial processing of fungal mycelium for yogurt alternative production.

Phellinus linteus

OncologyLiver support
SpeciesMesima, Sanghwang
JournalBioresource technology
Year2026

Key points

  • This study presents a green, integrated strategy for valorizing fungal mycelium from Phellinus linteus (PL) and Cordyceps sinensis (CS) into functional yogurt alternatives
  • The effects of high-pressure homogenization (HPH), thermal pasteurization, and microbial fermentation on structural constituents and rheological properties were systematically investigated
  • HPH reduced particle size (by 77% in PL, 67% in CS) and increased protein solubility (35.7% in PL, 42.7% in CS), promoting the transition from a liquid-like system to a viscoelastic network
  • Prolonged pasteurization (85 °C, 30 min) enhanced starch gelatinization compared to shorter treatment (5 min), improving viscosity, water-binding capacity, and microbial safety
  • In situ production of dextran and β-glucan by Weissella confusa VIII40 and Pediococcus claussenii 55 T, respectively, significantly enhanced viscosity, viscoelastic moduli, and creep-recovery behavior
  • Notably, high dextran yields (2.6-3.1%) significantly reduced syneresis to below 10%

Metadata-grounded summary

Citation abstract

This study presents a green, integrated strategy for valorizing fungal mycelium from Phellinus linteus (PL) and Cordyceps sinensis (CS) into functional yogurt alternatives. The effects of high-pressure homogenization (HPH), thermal pasteurization, and microbial fermentation on structural constituents and rheological properties were systematically investigated. HPH reduced particle size (by 77% in PL, 67% in CS) and increased protein solubility (35.7% in PL, 42.7% in CS), promoting the transition from a liquid-like system to a viscoelastic network. Prolonged pasteurization (85 °C, 30 min) enhanced starch gelatinization compared to shorter treatment (5 min), improving viscosity, water-binding capacity, and microbial safety. Fermentation with commercial yogurt starters reached pH 4.5 within 7 h and probiotic levels of 8-9 log colony-forming units (CFU)/g. In situ production of dextran and β-glucan by Weissella confusa VIII40 and Pediococcus claussenii 55 T, respectively, significantly enhanced viscosity, viscoelastic moduli, and creep-recovery behavior. Notably, high dextran yields (2.6-3.1%) significantly reduced syneresis to below 10%. Overall, the integrated mechanical and microbial processing demonstrates a clean-label method for converting underutilized fungal biomass into high fiber yogurt alternatives with improved rheological and textural quality.

Citation

Wang Y, Watagoda R, Yang X, Kangas M, Jian C (2026). Green mechanical and microbial processing of fungal mycelium for yogurt alternative production. Bioresource technology https://doi.org/10.1016/j.biortech.2026.134053 PMID: 41571107

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