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Essential oil polymorphism of wild growing Hungarian thyme (Thymus pannonicus) populations in the Carpathian Basin

机译:喀尔巴阡盆地野生野生百里香(Thymus pannonicus)种群的精油多态性

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The volatile oil compositions of Thymus pannonicus All. from nineteen different localities of Hungary were analyzed by GC/MS. The essential oil content of the Hungarian thyme samples varied between very low (0.14 mL/100 g DW) and fairly high (1.9 mL/100 g DW) values. Significant essential oil polymorphism was found: altogether twelve chemovarieties may have been determined, representing a way of adaptation to different habitat conditions. The main volatile compound of chemotype 1 was thymol (24.6-67.5%), while in the case of chemotype 2, thymol (36.5-63.7%) and p-cymene (11.5-27.3%) predominated. Thymol (28.4-63.7%), p-cymene (11.5-31.8%) and γ-terpinene (9.7-20.9%) were identified as the chief monoterpenes of chemotype 3, while chemotype 4 contained thymol (36.5%), p-cymene (27.3%) and neral (11.2%). Chemotype 5 accumulated thymol (38.5%), p-cymene (20.6%), γ-terpinene (12.0%) and β-bisabolene (10.3%) as its main volatiles. The oil of chemotype 6 can be characterized by thymol (41.9%), p-cymene (20.2%), isoborneol (10.3%) and ?-terpinene (9.9%), while that of chemotype 7 consisted of thymol (27.7%), linalyl acetate (18.8%), γ-terpinene (18.6%) and α-cubebene (13.9%). In the oil of chemotype 8, p-cymene (45.0%), geraniol (13.6%) and linalyl acetate (9.9%) were found in higher percentages, while chemotype 9 mainly produced linalyl acetate (36.2%) and geranyl acetate (20.2%). Chemotype 10 accumulated germacrene-D (43.4) and β-caryophyllene (15.0%), while the oil of chemotype 11 contained caryophyllene oxide (45.2%), α-cubebene (15.7%) and linalool (13.8%) in high proportions. Germacrene-D (29.7%), β-caryophyllene (22.0%) and farnesol (10.4%) were identified as main essential oil compounds of chemotype 12. The last nine chemotypes were new for the literature, while the first seven contained thymol as their chief compound. The role of certain sesquiterpenes was found to be considerable.
机译:百里香百里香All的挥发油成分。通过GC / MS分析了来自匈牙利19个不同地区的数据。匈牙利百里香样品的精油含量在非常低的值(0.14 mL / 100 g DW)和相当高的值(1.9 mL / 100 g DW)之间变化。发现了重要的精油多态性:总共确定了十二种化学特征,代表了一种适应不同生境条件的方式。化学型1的主要挥发性化合物是百里香酚(24.6-67.5%),而在化学型2的情况下,百里香酚(36.5-63.7%)和对异丙基苯甲醚(11.5-27.3%)占主导地位。百里酚(28.4-63.7%),对-异丙基(11.5-31.8%)和γ-萜品烯(9.7-20.9%)被确定为化学型3的主要单萜,而化学四型包含百里酚(36.5%)和对-异丙基。 (27.3%)和神经(11.2%)。化学型5累积了百里酚(38.5%),对伞花烃(20.6%),γ-萜品烯(12.0%)和β-双丁香烯(10.3%)作为其主要挥发物。化学类型6的油的特征在于百里酚(41.9%),对-异丙苯(20.2%),异冰片醇(10.3%)和β-萜品烯(9.9%),而化学类型7的油则由百里酚(27.7%)组成,乙酸芳樟酯(18.8%),γ-萜品烯(18.6%)和α-立方烯(13.9%)。在化学类型8的油中,发现对百里香酚(45.0%),香叶醇(13.6%)和乙酸芳樟酯(9.9%)的百分比更高,而化学类型9的油主要生成乙酸芳樟酯(36.2%)和乙酸香叶酯(20.2%)。 )。化学型10积累了germ草烯-D(43.4)和β-石竹烯(15.0%),而化学型11的油中含有高比例的石竹烯氧化物(45.2%),α-立方烯(15.7%)和芳樟醇(13.8%)。鉴定出Germacrene-D(29.7%),β-石竹烯(22.0%)和法尼醇(10.4%)是化学型12的主要精油化合物。文献中最新的9种化学型是新的,而前7种化学型包含百里酚作为它们的化学型。主要化合物。发现某些倍半萜的作用是相当大的。

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