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Antifungal modes of action of tea tree oil and its two characteristic components against Botrytis cinerea
Author(s) -
Yu D.,
Wang J.,
Shao X.,
Xu F.,
Wang H.
Publication year - 2015
Publication title -
journal of applied microbiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.889
H-Index - 156
eISSN - 1365-2672
pISSN - 1364-5072
DOI - 10.1111/jam.12939
Subject(s) - botrytis cinerea , tea tree oil , melaleuca alternifolia , essential oil , hypha , biology , antifungal , mycelium , mode of action , botany , microbiology and biotechnology , biochemistry
Aims The essential oil of Melaleuca alternifolia (tea tree) has been evaluated as a potential eco‐friendly antifungal agent against Botrytis cinerea . In this study, we investigated the antifungal activity and mode of action of tea tree oil (TTO) and its components against B. cinerea . Methods and Results Of the components we tested in contact phase, terpinen‐4‐ol had the highest antifungal activity, followed by TTO, α ‐terpineol, terpinolene, then 1,8‐cineole. As one of characteristic components of TTO, terpinen‐4‐ol treatment led to pronounced alterations in mycelial morphology, cellular ultrastructure, membrane permeability under scanning electron microscope, transmission electron microscope and fluorescent microscope, and also reduced the ergosterol content of fungi. As another characteristic component, 1,8‐cineole caused serious intracellular damage but only slightly affected B. cinerea otherwise. When terpinen‐4‐ol and 1,8‐cineole were used together, the synergistic antifungal activity was significantly higher than either component by itself. Conclusions The results of our study confirmed that terpinen‐4‐ol and 1,8‐cineole act mainly on the cell membranes and organelles of B. cinerea , respectively, and when combined are similar to TTO in antifungal activity due to their differences. Significance and Impact of the Study Understanding the mechanism of terpinen‐4‐ol and 1,8‐cineole antifungal action to B. cinerea is helpful for investigation on their synergistic effect and explaining antifungal action modes of TTO.