In Vitro Antifungal Activity of the Diterpenoid 7 alpha-Hydroxy-8(17)-labden-15-oic Acid and Its Derivatives against Botrytis cinerea

Mendoza L.; Espinoza, P; Urzúa, A; Vivanco M.; Cotoras, M.

Abstract

We investigated the inhibitory effect of the natural diterpenoids, 7a-hydroxy-8(17)-labden-15-oic acid (salvic acid, 1), 7a- acetanoyloxy-8(17)-labden-15-oic acid (acetylsalvic acid, 2) and the hemisynthetic diterpenoids 7a-acyloxy-8(17)-labden-15-oic acids derivatives, 7a-propanoyloxy-8(17)-labden-15-oic acid (propanoylsalvic acid, 3), 7a-butanoyloxy-8(17)-labden-15-oic acid (butanoylsalvic acid, 4) and 7a- isopentanoyloxy-8(17)-labden-15-oic acid (isopentanoylsalvic acid, 5), against Botrytis cinerea. Diterpenoid fungitoxicity was assessed using the radial growth test method. All diterpenoids, with the exception of isopentenoylsalvic acid, inhibited the mycelial growth of B. cinerea in solid media. Shortest side-chain diterpenoids were more effective than the derivatives with longer chains in the inhibition of B. cinerea mycelial growth. The results suggest that hydrophobicity and structural features would be important factors in the antifungal effect of these diterpenoids. Studies on a possible action mechanism of natural diterpenoids, salvic acid and acetylsalvic acid, showed that these diterpenoids exerted their effect by a different mechanism. Salvic acid did not alter cytoplasmic membrane or cause respiratory chain inhibition. Instead, acetylsalvic acid affected the cytoplasmic membrane producing leakage of 260-nm absorbing compounds.

Más información

Título según WOS: In Vitro Antifungal Activity of the Diterpenoid 7 alpha-Hydroxy-8(17)-labden-15-oic Acid and Its Derivatives against Botrytis cinerea
Título según SCOPUS: In vitro antifungal activity of the diterpenoid 7?-hydroxy-8(17)- labden-15-oic acid and its derivatives against botrytis cinerea
Título de la Revista: MOLECULES
Volumen: 14
Número: 6
Editorial: MDPI
Fecha de publicación: 2009
Página de inicio: 1966
Página final: 1979
Idioma: English
URL: http://www.mdpi.com/1420-3049/14/6/1966/
DOI:

10.3390/molecules14061966

Notas: ISI, SCOPUS