4.2 Article

Interdependent nitric oxide and hydrogen peroxide independently regulate the coix seed oil-induced triterpene acid accumulation in Ganoderma lingzhi

Journal

MYCOLOGIA
Volume 111, Issue 4, Pages 529-540

Publisher

TAYLOR & FRANCIS INC
DOI: 10.1080/00275514.2019.1615816

Keywords

Coix seed oil; Ganoderma lingzhi; hydrogen peroxide; nitric oxide; triterpene acids

Categories

Funding

  1. National Natural Science Foundation of China [31772374]
  2. Scientific Research Fund of Hunan Provincial Education Department, China [17K106, 18B167]
  3. National Key R&D Programs of Intergovernmental International Science and Technology Cooperation [2017YFE0108100]
  4. Project of International Cooperation Base of Science and Technology Innovation on Forest Resource Biotechnology of Hunan Province [2018WK4008]
  5. Program of Forestry Science Innovation of Hunan Province [XLK201944]

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Recent progress has been made in adding exogenous vegetable oils in culture media to promote bioactive metabolite production in several medicinal mushrooms, but the mechanism is still unclear. In this study, we found that the vegetable oil coix seed oil (CSO) could induce the biosynthesis of triterpene acids (TAs) and also significantly increase cytoplasmic nitric oxide (NO) and hydrogen peroxide (H2O2) concentrations in the mycelium of Ganoderma lingzhi. The change in TA biosynthesis caused by CSO could be reversed by adding NO scavenger or H2O2 scavenger, and adding NO scavenger or H2O2 scavenger resulted in the reduction of the cytoplasmic H2O2 or NO concentration under CSO treatment, respectively. Moreover, adding NO scavenger or H2O2 scavenger reversed TA biosynthesis, which could be rescued by H2O2 or NO donor, respectively. Taken together, our study indicated that both NO and H2O2 were involved in the regulation of TA biosynthesis, and CSO-activated NO and H2O2 were interdependent but independently regulated the TA biosynthesis under CSO treatment in G. lingzhi.

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