The hydrodistilled leaf essential oil of Machilus philippinensis was analyzed to determine its composition and yield. Seventy compounds were identified, the main ones being β-caryophyllene (13.6%), α-pinene (12.0%), α-cadinol (7.4%), cis-ocimene (7.0%), spathulenol (5.6%), (E)-nerolidol (5.3%), tau-cadinol (4.8%) and β-pinene (4.5%). Monoterpene hydrocarbons (36.1%) and oxygenated sesquiterpenes (33.0%) were the predominant groups of compounds. The leaf oil exhibited excellent anti-wood-decay fungal activities.
LinHC, LeeSS. (2009) α-Glucosidase inhibitors from the leaves of Machilus philippinensis (II) (1). Planta Medica, 75, 916.
4.
KartalSN, ImamuraY, TsuchiyaF, OhsatoK. (2004) Evaluation of fungicidal and termiticidal activities of hydrolysates from biomass slurry fuel production from wood. Bioresource Technology, 95, 41–47.
5.
KartalSN, DorauBF, LebowST, GrennIF. (2004) Effects of inorganic ions on leachability of wood preserving N,N-hydroxynapthalimide (NHA). Forest Product Journal, 54, 80–84.
6.
AdamsRP. (2001) Identification of Essential Oil Components by Gas Chromatography/Quadruple Mass Spectroscopy, Allured, Carol Stream, IL.
7.
WangSY, WuCL, ChuFH, ChienSC, KuoYH, ShyurLF, ChangST. (2005) Chemical composition and antifungal activity of essential oil isolated from Chamaecyparis formosensis Matsum. wood. Holzforschung, 59, 295–299.
8.
WangSY, ChenPF, ChangST. (2005) Antifungal activities of essential oils and their constituents from indigenous cinnamon (Cinnamomum osmophloeum) leaves against wood decay fungi. Bioresource Technology, 96, 813–818.
9.
KondoR, ImamuraH. (1986) Antifungal compounds in heartwood extractives of hinoki (Chamaecyparis obtusa Endl.). Mokuzai Gakkaishi, 32, 213–217.
10.
ChangST, WangSY, WuCL, SuYC, KuoYH. (1999) Antifungal compounds in the ethyl acetate soluble fraction of the extractives of Taiwania (Taiwania cryptomerioides Hayata) heartwood. Holzforschung, 53, 487–490.
11.
HoCL, WangEIC, WeiXT, LuSY, SuYC. (2008) Composition and bioactivities of the leaf essential oils of Cinnamomum subavenium Miq. from Taiwan. Journal of Essential Oil Research, 20, 328–334.
12.
HoCL, WangEIC, SuYC. (2009) Composition of the leaf oils of Prunus phaeosticta var. phaeosticta from Taiwan. Journal of Essential Oil Research, 21, 345–347.
13.
SuYC, HoCL, WangEIC. (2006) Analysis of leaf essential oils from the indigenous five conifers of Taiwan. Flavour and Fragrance Journal, 21, 447–452.
14.
HoCL, WangEIC, LeePY, SuYC. (2009) Composition and antimicrobial activity of the leaf essential oil of Litsea nakaii from Taiwan. Natural Product Communications, 4, 865–868.
15.
HoCL, WangEIC, HsuKP, LeePY, SuYC. (2009) Composition and antimicrobial activity of the leaf essential oil of Litsea kostermansii from Taiwan. Natural Product Communications, 4, 1123–1126.
16.
Van den DoolH, KratzPD. (1963) A generalization of the retention index system including linear temperature programmed gasliquid partition chromatography. Journal of Chromatography, 11, 463–471.
17.
MassadaY. (1976) Analysis of Essential Oil by Gas Chromatography and Spectrometry, Wiley, New York.
18.
SuYC, HoCL, WangEIC, ChangST. (2006) Antifungal activities and chemical compositions of essential oils from leaves of four Eucalypts. Taiwan Journal of Forest Science, 21, 49–61.