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Enoki, Winter Mushroom · 1992 · Research Article

Low relevance

Solubilization and mineralization of lignin by white rot fungi.

Flammulina velutipes

Immune support
SpeciesEnoki, Winter Mushroom
JournalApplied and environmental microbiology
Year1992

Key points

  • The white rot fungi Lentinula edodes, Phanerochaete chrysosporium, Pleurotus sajor-caju, Flammulina velutipes, and Schizophyllum commune were grown in liquid media containing C-lignin-labelled wood, and the formation of water-soluble C-labelled products and CO(2), the growth of the fungi, and the activities of extracellular lignin peroxidase, manganese peroxidase, and laccase were measured
  • Conditions that affect the rate of lignin degradation were imposed, and both long-term (0- to 16-day) and short-term (0- to 72-h) effects on the production of the two types of product and on the activities of the enzymes were monitored
  • The production of CO(2)-labelled products from the aqueous ones was also investigated
  • The short-term studies showed that the different conditions had different effects on the production of the two products and on the activities of the enzymes
  • Nitrogen sources inhibited the production of both products by all species when differences in growth could be discounted
  • With P. chrysosporium, the results were consistent, with lignin peroxidase playing a role in lignin solubilization and manganese peroxidase being important in subsequent CO(2) production

Metadata-grounded summary

Citation abstract

The white rot fungi Lentinula edodes, Phanerochaete chrysosporium, Pleurotus sajor-caju, Flammulina velutipes, and Schizophyllum commune were grown in liquid media containing C-lignin-labelled wood, and the formation of water-soluble C-labelled products and CO(2), the growth of the fungi, and the activities of extracellular lignin peroxidase, manganese peroxidase, and laccase were measured. Conditions that affect the rate of lignin degradation were imposed, and both long-term (0- to 16-day) and short-term (0- to 72-h) effects on the production of the two types of product and on the activities of the enzymes were monitored. The production of CO(2)-labelled products from the aqueous ones was also investigated. The short-term studies showed that the different conditions had different effects on the production of the two products and on the activities of the enzymes. Nitrogen sources inhibited the production of both products by all species when differences in growth could be discounted. Medium pH and manganese affected lignin degradation by the different species differently. With P. chrysosporium, the results were consistent, with lignin peroxidase playing a role in lignin solubilization and manganese peroxidase being important in subsequent CO(2) production.

Citation

Boyle CD, Kropp BR, Reid ID (1992). Solubilization and mineralization of lignin by white rot fungi. Applied and environmental microbiology https://doi.org/10.1128/aem.58.10.3217-3224.1992 PMID: 16348781

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