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Oyster Mushroom · 2024 · Journal Article

High relevance

Use of Ozone as a Substrate Treatment for the Control of Trichoderma in the Production of Pleurotus ostreatus.

Pleurotus ostreatus

Metabolic health
SpeciesOyster Mushroom
JournalCurrent microbiology
Year2024

Key points

  • It can be produced in many lignocellulosic substrates after carrying out a treatment to eliminate competing microorganisms
  • The aim of this work is to evaluate if ozone can be employed as treatment for decontamination of the substrate used for the production of the edible mushroom P. ostreatus to control of green mold Trichoderma
  • Ten treatments were carried out including two treatments with inoculation by a spray of conidia of Trichoderma
  • The effect of ozone on the conidia was also evaluated
  • We found that the treatment of the substrate with ozone in immersed water resulted more effective (lower growth of Trichoderma) than injecting ozone into a closed tank
  • Anyway, we found that the contaminant fungi could grow on the substrate in both treatments with ozone

Metadata-grounded summary

Citation abstract

Pleurotus ostreatus is one of the most widely cultivated species in the world. It can be produced in many lignocellulosic substrates after carrying out a treatment to eliminate competing microorganisms. The most commonly used is pasteurization by steam or by immersion in hot water. The aim of this work is to evaluate if ozone can be employed as treatment for decontamination of the substrate used for the production of the edible mushroom P. ostreatus to control of green mold Trichoderma. Wheat straw was employed as a substrate. We used two different methodologies: bubbling ozone into a tank with water and the substrate, and injecting ozone into a closed tank with the substrate inside. Ten treatments were carried out including two treatments with inoculation by a spray of conidia of Trichoderma. The effect of ozone on the conidia was also evaluated. We found that the treatment of the substrate with ozone in immersed water resulted more effective (lower growth of Trichoderma) than injecting ozone into a closed tank. Anyway, we found that the contaminant fungi could grow on the substrate in both treatments with ozone. We observed that although ozone affected the conidia when it was bubbled into water, some of them still managed to survive and could germinate 72 h later. P. ostreatus could grow and produce fruiting bodies on a substrate that was previously treated with ozone and yields were not affected. Based on the results obtained, we conclude that ozone may not be an effective agent to control Trichoderma in highly contaminated substrates, at least in the experimental conditions that we used, for the production of P. ostreatus.

Citation

Jaramillo Mejía S, Colavolpe MB, Ganuza M, Albertó E (2024). Use of Ozone as a Substrate Treatment for the Control of Trichoderma in the Production of Pleurotus ostreatus. Current microbiology https://doi.org/10.1007/s00284-024-03691-z PMID: 38762690

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