Composition of the essential oil of Lepidium meyenii (Walp.)

被引:83
作者
Tellez, MR
Khan, IA
Kobaisy, M
Schrader, KK
Dayan, FE
Osbrink, W
机构
[1] USDA ARS, Nat Prod Utilizat Res Unit, University, MS 38677 USA
[2] Univ Mississippi, Dept Pharmacognosy, Natl Ctr Nat Prod Res, Res Inst Pharmaceut Sci, University, MS 38677 USA
[3] USDA ARS, Formosan Subterranean Termite Res Unit, So Reg Res Ctr, Washington, DC 20250 USA
关键词
Lepidium meyenii; Brassicaceae; Maca; essential oil composition; cyanobacteria; algae; plant; termite; Coptotermes formosanus; bioactivity;
D O I
10.1016/S0031-9422(02)00208-X
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 [生物化学与分子生物学]; 081704 [应用化学];
摘要
The essential oil profile of maca (Lepidium meyenii) obtained from Lima, Peru, was examined. Steam distillates of the aerial parts of L. meyenii were continuously extracted with pentane and the pentane extracts analyzed by GC/MS. Retention indices and mass spectral data were used to identify 53 oil components. Phenyl acetonitrile (85.9%), benzaldehyde (3.1%), and 3-methoxyphenylacetonitrile (2.1%) were the major components of the steam distilled oil. The oil of L. meyenii was tested for phytotoxic, cyanobactericidal, and antitermite activity. The oil was selectively toxic towards the cyanobacterium Oscillatoria perornata compared to the green alga Selenastrum capricornutum, with complete growth inhibition at 100 mug/ml. Mortality of the Formosan subterranean termite, Coptotermes formosanus, was numerically, but not significantly, higher when held on filter paper treated with maca oil. At 1% (w/w), maca oil also appeared to act as a feeding deterrent to termites. Several minor components of the essential oil of maca including 3-methoxyphenylacetonitrile and benzylthiocyanate were significantly active against the Formosan termite. This is the first report on the essential oil composition of L. meyenii. (C) 2002 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:149 / 155
页数:7
相关论文
共 27 条
[1]
Adams R., 2001, Identification of essential oil components by gas chromatography/quadrupole mass spectrometry
[2]
Adams R. P., 2007, Identification of essential oil components by gas chromatography/mass spectrometry
[3]
ORGANOTHIOCYANATES AS INSECTICIDES AND CARBAMATE SYNERGISTS [J].
BAKRY, N ;
METCALF, RL ;
FUKUTO, TR .
JOURNAL OF ECONOMIC ENTOMOLOGY, 1968, 61 (05) :1303-&
[4]
TOXICITY OF COMPOUNDS DERIVED FROM LIMNANTHES-ALBA SEED TO FALL ARMYWORM (LEPIDOPTERA, NOCTUIDAE) AND EUROPEAN CORN-BORER (LEPIDOPTERA, PYRALIDAE) LARVAE [J].
BARTELT, RJ ;
MIKOLAJCZAK, KL .
JOURNAL OF ECONOMIC ENTOMOLOGY, 1989, 82 (04) :1054-1060
[5]
COMAS M, 1997, ALIMENTARIA, V286, P85
[6]
Comparative phytotoxicity of artemisinin and several sesquiterpene analogues [J].
Dayan, FE ;
Hernández, A ;
Allen, SN ;
Moraes, RM ;
Vroman, JA ;
Avery, MA ;
Duke, SO .
PHYTOCHEMISTRY, 1999, 50 (04) :607-614
[7]
CHEMICAL-COMPOSITION OF LEPIDIUM-MEYENII [J].
DINI, A ;
MIGLIUOLO, G ;
RASTRELLI, L ;
SATURNINO, P ;
SCHETTINO, O .
FOOD CHEMISTRY, 1994, 49 (04) :347-349
[8]
The chemical diversity and distribution of glucosinolates and isothiocyanates among plants [J].
Fahey, JW ;
Zalcmann, AT ;
Talalay, P .
PHYTOCHEMISTRY, 2001, 56 (01) :5-51
[9]
DEGRADATION OF GLUCOSINOLATES OF NASTURTIUM-OFFICINALE SEEDS [J].
GIL, V ;
MACLEOD, AJ .
PHYTOCHEMISTRY, 1980, 19 (08) :1657-1660
[10]
ENZYMATIC MECHANISMS AND TOXICOLOGICAL SIGNIFICANCE OF HYDROGEN-CYANIDE LIBERATION FROM VARIOUS ORGANOTHIOCYANATES AND ORGANONITRILES IN MICE AND HOUSEFLIES [J].
OHKAWA, H ;
OHKAWA, R ;
YAMAMOTO, I ;
CASIDA, JE .
PESTICIDE BIOCHEMISTRY AND PHYSIOLOGY, 1972, 2 (01) :95-&