4.5 Article

Methyl jasmonate and crude extracts of Fusarium solani elicit agarwood compounds in shoot culture of Aquilaria malaccensis Lamk

期刊

HELIYON
卷 7, 期 4, 页码 -

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ELSEVIER SCI LTD
DOI: 10.1016/j.heliyon.2021.e06725

关键词

Agarwood; Aquilaria malaccensis; Elicitation; Fusarium solani; Methyl jasmonate; Shoot culture

资金

  1. ITB research grant through P3MI program

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The study established an in vitro culture method to induce agarwood production in Aquillaria malaccensis using MeJA and Fusarium solani extracts. MeJA-treated shoots showed agarwood compounds, while shoots treated with extracts contained different compounds. This suggests that different elicitors can manipulate the production of various compounds in agarwood cultures.
Agarwood forms in the heartwood of trees in the family Thymelaeaceae in response to wounding, infection, or other stresses. Its formation is random and takes decades in natural populations, which are harvested for their aromatic compounds. This harvest has led to declining population, and many agarwood producing trees are considered endangered. Therefore, an alternative source would be desirable. We established an in vitro shoot culture method for one agarwood species, Aquillaria malaccensis. Agarwood production was elicited by introducing methyl jasmonate (MeJA) and crude extracts of Fusarium solani into the liquid culture medium. A high concentration of MeJA resulted in necrotic shoot tissue, while application of the crude extracts had no effect on growth of the shoots. Interestingly, gas chromatography-mass spectrometry (GC-MS) analysis of MeJA-treated shoots revealed the presence of several agarwood compounds, including sesquiterpenes and chromone derivative. In addition, GC-MS analysis of shoot-treated with the extracts revealed the presence of alkanes, aromatic compounds, and fatty acid derivatives. It may be that different elicitors induce the production of different compounds in A. malaccensis in vitro shoot cultures and could be used to manipulate the accumulation of different products in culture.

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