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Turkey Tail, Yun Zhi · 2020 · Journal Article

Medium relevance

Influence of saprophytic fungi and inorganic additives on enzyme activities and chemical properties of the biodegradation process of wheat straw for the production of organo-mineral amendments.

Trametes versicolor

OncologyImmune support
SpeciesTurkey Tail, Yun Zhi
JournalJournal of environmental management
Year2020

Key points

  • Cellulose and lignin as main components of crop residues have a significant influence on composting operations and composition of the final products
  • Both are strongly associated, and lignin can be considered an important barrier during the biodegradation process of lignocellulosic materials
  • Therefore, the influence of the inoculation of saprophytic fungi (Coriolopsis rigida, Pleurotus ostreatus, Trichoderma harzianum and Trametes versicolor) and the supply of inorganic additives (Al 2 O 3, Fe 2 O 3 and allophanic soil) that promote the stabilization of carbon (C), were analyzed in the biodegradation of wheat straw (WS)
  • The activity of LAC, MnP and the E 4 /E 6 ratio were significantly influenced and increased (enzymes) by fungi species, inorganic additives, and time of inorganic material addition, as well as their interactions (p < 0.05)
  • The WS inoculated with T. versicolor showed the highest average activities for LAC, MnP and β-glucosidase (2000, 220 UL -1 and 400 μmol pNP g -1 h -1 respectively)
  • Furthermore, the addition of Al 2 O 3 and Fe 2 O 3 increased all the activities regarded to the decomposition of WS and influenced the changes associated with the stabilization of OM in composted WS. In conclusion, the inoculation of WS with T. versicolor in combination with metal oxides improved the enzyme related to the biodegradation process of WS favorizing its stabilization in the medium time, which is of importance in the composting of residues with high C/N ratio

Metadata-grounded summary

Citation abstract

Cellulose and lignin as main components of crop residues have a significant influence on composting operations and composition of the final products. Both are strongly associated, and lignin can be considered an important barrier during the biodegradation process of lignocellulosic materials. Saprophytic fungi are efficient lignin degraders due to their complex enzymatic system. Therefore, the influence of the inoculation of saprophytic fungi (Coriolopsis rigida, Pleurotus ostreatus, Trichoderma harzianum and Trametes versicolor) and the supply of inorganic additives (Al 2 O 3, Fe 2 O 3 and allophanic soil) that promote the stabilization of carbon (C), were analyzed in the biodegradation of wheat straw (WS). The activity of Laccase (LAC), manganese peroxidase (MnP) and β-glucosidase and changes in temperature, pH and E 4 /E 6 ratio were analyzed in a biodegradation process of 126 days. The activity of LAC, MnP and the E 4 /E 6 ratio were significantly influenced and increased (enzymes) by fungi species, inorganic additives, and time of inorganic material addition, as well as their interactions (p < 0.05). The WS inoculated with T. versicolor showed the highest average activities for LAC, MnP and β-glucosidase (2000, 220 UL -1 and 400 μmol pNP g -1 h -1 respectively). Furthermore, the addition of Al 2 O 3 and Fe 2 O 3 increased all the activities regarded to the decomposition of WS and influenced the changes associated with the stabilization of OM in composted WS. In conclusion, the inoculation of WS with T. versicolor in combination with metal oxides improved the enzyme related to the biodegradation process of WS favorizing its stabilization in the medium time, which is of importance in the composting of residues with high C/N ratio.

Citation

Medina J, Monreal CM, Orellana L, Calabi-Floody M, González ME, Meier S, et al. (2020). Influence of saprophytic fungi and inorganic additives on enzyme activities and chemical properties of the biodegradation process of wheat straw for the production of organo-mineral amendments. Journal of environmental management https://doi.org/10.1016/j.jenvman.2019.109922 PMID: 32063309

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