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鉴定导致不同品种皇冠贝母(百合科)产生典型狐臭味的挥发性成分。

Identification of the volatile component(s) causing the characteristic foxy odor in various cultivars of Fritillaria imperialis L. (Liliaceae).

作者信息

Helsper Johannes Petrus Franciscus Gerardus, Bücking Mark, Muresan Sorel, Blaas Jan, Wietsma Willem Anne

机构信息

Plant Research International (PRI-DLO), P.O. Box 16, and Agrotechnology and Food Innovations (A&F-DLO), P.O. Box 17, 6700 AA Wageningen, The Netherlands.

出版信息

J Agric Food Chem. 2006 Jul 12;54(14):5087-91. doi: 10.1021/jf0605594.

Abstract

To identify the component(s) causing the foxy odor, characteristic for some Fritillaria imperialis cultivars, the headspace of flower bulbs was analyzed using gas chromatography-olfactometry (GC-O) and GC-mass spectrometry (GC-MS). Six Fritillaria species and cultivars were selected as follows: F. imperialis cv. Premier (very strong foxy odor), F. imperialis cv. Lutea (strong foxy odor), F. imperialis ssp. Inodora (no odor), Fritillaria eduardii (weak mousy odor), Fritillaria raddeana (no odor), and an F1 of F. imperialis Lutea x Inodora (weak foxy odor). Volatiles from these flower bulbs were accumulated on Tenax and injected into the GC by thermodesorption. The majority of the volatiles consisted of low molecular weight aliphatic compounds. GC-O revealed that the foxy odor was caused by a single component, identified as 3-methyl-2-butene-1-thiol on the basis of smell in GC-O analyses (two GC columns), mass spectra, and retention times. Chemical identification was substantiated by GC-O and GC-MS of an authentic standard of 3-methyl-2-butene-1-thiol, prepared by organic synthesis.

摘要

为了鉴定导致某些帝王贝母品种所特有的狐臭味的成分,使用气相色谱 - 嗅觉测量法(GC - O)和气相色谱 - 质谱法(GC - MS)对鳞茎的顶空进行了分析。选择了六种贝母属物种和品种如下:帝王贝母品种“Premier”(狐臭味非常浓烈)、帝王贝母品种“Lutea”(狐臭味浓烈)、帝王贝母亚种“Inodora”(无气味)、浙贝母(微弱的鼠臭味)、川贝母(无气味),以及帝王贝母“Lutea”与“Inodora”的杂交一代(微弱的狐臭味)。这些鳞茎中的挥发物吸附在Tenax上,并通过热解吸注入气相色谱仪。大部分挥发物由低分子量脂肪族化合物组成。气相色谱 - 嗅觉测量法显示,狐臭味是由单一成分引起的,根据气相色谱 - 嗅觉测量法分析(两根气相色谱柱)中的气味、质谱图和保留时间,鉴定为3 - 甲基 - 2 - 丁烯 - 1 - 硫醇。通过有机合成制备的3 - 甲基 - 2 - 丁烯 - 1 - 硫醇标准品的气相色谱 - 嗅觉测量法和气相色谱 - 质谱法证实了化学鉴定结果。

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