The physiological and biochemical mechanisms of cinnamomum camphora xylem extracts inhibit wood-decay fungi

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Abstract

The present study investigated the physiological and biochemical mechanism of extracts derived from Cinnamomum camphora (L.) Presl. The methanol and chloroform extracts of C. camphora xylem exhibited inhibitory activity against oxygen consumption in Coriolus versicolor and Gloeophyllum trabeum. The inhibitory effect of cellulose secreted by G. trabeum was concentration-dependent. The application of the ethyl acetate extracts of C. camphora xylem on the G. trabeum hyphae resulted in an improvement in electric conductivity, which followed a concentration-dependent fashion. Protein permeability increased with higher concentrations of the ethyl acetate extracts of C. camphora xylem. This research provided theoretical basis for understanding of the physiological and biochemical mechanisms of C. camphora extracts inhibit wood-decay fungi and the development of natural extracts as wood preservatives.

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Zhang, H., Tu, K., Hou, Q., Lin, H., & Li, Q. (2020). The physiological and biochemical mechanisms of cinnamomum camphora xylem extracts inhibit wood-decay fungi. Wood Research, 65(4), 531–542. https://doi.org/10.37763/wr.1336-4561/65.4.531542

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