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The antifungal metabolites isolated from maize endophytic fungus Fusarium sp. induced by OSMAC strategy

Tipo de material: TextoTextoSeries ; Fitoterapia, 171, p.105710, 2023Trabajos contenidos:
  • Sun, J
  • Yang, X. Q
  • Wan, J. L
  • Han, H. L
  • Zhao, Y. D
  • Cai, L
  • Ding, Z. T
Tema(s): Recursos en línea: Resumen: Six new sesquiterpenes, fusarchlamols A-F (1, 2, 4-7); one new natural product of sesquiterpenoid, methyltricinonoate (3); and ten known compounds were found from Fusarium sp. cultured in two different media by the one strain many compounds strategy. The compounds (1, 2, and 4-11)were isolated from Fusarium sp. in PDB medium, and compounds (3-5, 8, and 10-17)were discovered from Fusarium sp. in coffee medium. Additionally, the configuration of 8 was first reported in the research by Mosher's method. The structures were established by 1D, 2D NMR, mass spectrometry, calculated ECD spectra, and Mosher's method. Compounds 1, 2, 6/7, 12, and 16 indicated significant antifungal activities against the phytopathogen Alternaria alternata isolated from Coffea arabica with MICs of 1 ?g/mL. The investigation on the anti-phytopathogen activity of metabolites can provide lead compounds for agrochemicals.
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Six new sesquiterpenes, fusarchlamols A-F (1, 2, 4-7); one new natural product of sesquiterpenoid, methyltricinonoate (3); and ten known compounds were found from Fusarium sp. cultured in two different media by the one strain many compounds strategy. The compounds (1, 2, and 4-11)were isolated from Fusarium sp. in PDB medium, and compounds (3-5, 8, and 10-17)were discovered from Fusarium sp. in coffee medium. Additionally, the configuration of 8 was first reported in the research by Mosher's method. The structures were established by 1D, 2D NMR, mass spectrometry, calculated ECD spectra, and Mosher's method. Compounds 1, 2, 6/7, 12, and 16 indicated significant antifungal activities against the phytopathogen Alternaria alternata isolated from Coffea arabica with MICs of 1 ?g/mL. The investigation on the anti-phytopathogen activity of metabolites can provide lead compounds for agrochemicals.

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