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Reishi, Lingzhi · 2026 · Journal Article

Medium relevance

Lignolytic Degradation of Eucalyptus and Bamboo Wood Blocks by Three White Rot Fungi and Their Action on-Eucalyptus Sawdust.

Ganoderma lucidum

OncologyImmune supportMetabolic healthLiver support
SpeciesReishi, Lingzhi
JournalIndian journal of microbiology
Year2026

Key points

  • The study aimed to assess the lignolytic enzyme production in three white rot fungi (WRF) upon stimulation with metal ion (FeSO 4 ·7H 2 O) and thereby develop an optimal fungal consortium to enhance their lignolytic potential
  • In vitro wood decay experiments conducted with Eucalyptus and Bamboo demonstrated significant weight loss following inoculation with Trametes versicolor (TV), Ganoderma lucidum (GL), and Schizophyllum commune (SC)
  • Over time (45-90 days), the weight loss gradually increased in all inoculations, ranging from 6.50 to 16.90% for Eucalyptus and 7.90-17.70% for Bamboo
  • Qualitative plate assays revealed TV's positive ligninolytic potential in all tests, SC in three, and GL in only two tests
  • Fourier Transform Infrared Spectroscopy analysis of Eucalyptus sawdust treated with individual fungi and the consortium (TV, GL, and SC) showed significant lignin degradation compared to the control
  • While individual strains displayed a decrease in lignin-associated bands, the consortium exhibited a more pronounced decrease (98.55% and 84.21% at I 1511 /I 1739 and I 1248 /I 1739 ), indicating synergistic effects

Metadata-grounded summary

Citation abstract

The study aimed to assess the lignolytic enzyme production in three white rot fungi (WRF) upon stimulation with metal ion (FeSO 4 ·7H 2 O) and thereby develop an optimal fungal consortium to enhance their lignolytic potential. In vitro wood decay experiments conducted with Eucalyptus and Bamboo demonstrated significant weight loss following inoculation with Trametes versicolor (TV), Ganoderma lucidum (GL), and Schizophyllum commune (SC). Over time (45-90 days), the weight loss gradually increased in all inoculations, ranging from 6.50 to 16.90% for Eucalyptus and 7.90-17.70% for Bamboo. Qualitative plate assays revealed TV's positive ligninolytic potential in all tests, SC in three, and GL in only two tests. Secondary screening confirmed laccase, manganese peroxidase, and lignin peroxidase activities for all fungi, with SC consistently exhibiting higher activity. Fourier Transform Infrared Spectroscopy analysis of Eucalyptus sawdust treated with individual fungi and the consortium (TV, GL, and SC) showed significant lignin degradation compared to the control. While individual strains displayed a decrease in lignin-associated bands, the consortium exhibited a more pronounced decrease (98.55% and 84.21% at I 1511 /I 1739 and I 1248 /I 1739 ), indicating synergistic effects. Conversely, cellulose and hemicellulose associated band intensities increased, suggesting preferential lignin degradation by the fungal consortium. Overall, the study highlights the potential of all three fungal isolates to produce lignolytic enzymes with industrial applications.

Citation

Chepyala S, Bodiga S, Bathula J, Sihag K, Durgam MK (2026). Lignolytic Degradation of Eucalyptus and Bamboo Wood Blocks by Three White Rot Fungi and Their Action on-Eucalyptus Sawdust. Indian journal of microbiology https://doi.org/10.1007/s12088-024-01435-y PMID: 41710237

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