期刊论文详细信息
Molecules
Phytophthora austrocedri Elicitates Changes in Diterpene Profile of Austrocedrus chilensis
Verónica Rachel Olate2  Mar໚ Laura Vélez1  Alina Greslebin3  Guillermo Schmeda-Hirschmann2 
[1] CONICET-Área de Protección Forestal, Centro de Investigación y Extensión Forestal Andino Patagónico (CIEFAP), 9200 Esquel, Chubut, Argentina; E-Mail:;Laboratorio de Química de Productos Naturales, Instituto de Química de Recursos Naturales, Universidad de Talca, Casilla 747, 3460000 Talca, Chile; E-Mail:;CONICET-Facultad de Ciencias Naturales, Universidad Nacional de la Patagonia, 9200 Esquel, Chubut, Argentina; E-Mail:
关键词: Phytophthora austrocedri;    Austrocedrus chilensis;    resin diterpenes;    Cupressaceae;   
DOI  :  10.3390/molecules200815084
来源: mdpi
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【 摘 要 】

The populations of the Andean Cupressaceae Austrocedrus chilensis have been severely affected by a disease caused by the phytopathogenic fungus Phytophthora austrocedri. A study was undertaken to disclose changes in the resin composition of P. austrocedri-infected individuals, including naturally infected and artificially inoculated trees, compared with healthy A. chilensis trees. GC-MS and 1H-NMR studies showed a clear differentiation among healthy and infected resins, with the diterpene isopimara-8(9),15-dien-19-ol as a relevant constituent in resins from infected trees. The effect of resin fractions from P. austrocedri infected trees on the pathogen was assessed by measuring the mycelial growth in agar plates. The most active fractions from resin obtained from infected trees inhibited fungal growth by nearly 50% at 1 mg/dish (35.37 µg/cm2). The main constituent in the active fractions were 18-hydroxymanool and the aldehyde torulosal. Both compounds are oxidation products of manool and can be a chemical response of the tree to the pathogen or be formed from the pathogen as a biotransformation product of manool by microbial oxidation. While the diterpene profiles from A. chilensis tree resins can easily differentiate healthy and P. austrocedri infected individuals, the possible conversion of manool to the antifungal derivatives 4 and 6 by the microorganism remains to be established.

【 授权许可】

CC BY   
© 2015 by the authors; licensee MDPI, Basel, Switzerland.

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