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不同化学型大麻植物生长过程中大麻素和萜烯含量的演变。

Evolution of the Cannabinoid and Terpene Content during the Growth of Cannabis sativa Plants from Different Chemotypes.

机构信息

Aifame GmbH , Tüfi 450, 9105 Wald-Schönengrund, Switzerland.

Analytical Chemistry Department, University of the Basque Country (UPV/EHU) , Barrio Sarriena s/n, 48940 Leioa, Spain.

出版信息

J Nat Prod. 2016 Feb 26;79(2):324-31. doi: 10.1021/acs.jnatprod.5b00949. Epub 2016 Feb 2.

Abstract

The evolution of major cannabinoids and terpenes during the growth of Cannabis sativa plants was studied. In this work, seven different plants were selected: three each from chemotypes I and III and one from chemotype II. Fifty clones of each mother plant were grown indoors under controlled conditions. Every week, three plants from each variety were cut and dried, and the leaves and flowers were analyzed separately. Eight major cannabinoids were analyzed via HPLC-DAD, and 28 terpenes were quantified using GC-FID and verified via GC-MS. The chemotypes of the plants, as defined by the tetrahydrocannabinolic acid/cannabidiolic acid (THCA/CBDA) ratio, were clear from the beginning and stable during growth. The concentrations of the major cannabinoids and terpenes were determined, and different patterns were found among the chemotypes. In particular, the plants from chemotypes II and III needed more time to reach peak production of THCA, CBDA, and monoterpenes. Differences in the cannabigerolic acid development among the different chemotypes and between monoterpene and sesquiterpene evolution patterns were also observed. Plants of different chemotypes were clearly differentiated by their terpene content, and characteristic terpenes of each chemotype were identified.

摘要

研究了大麻植物生长过程中主要大麻素和萜烯的演变。在这项工作中,选择了 7 种不同的植物:每种化学型 I 和 III 各 3 种,化学型 II 1 种。每个母株的 50 个克隆在控制条件下室内生长。每周,从每种品种中切下并干燥三株植物,分别分析叶子和花。通过 HPLC-DAD 分析了 8 种主要大麻素,通过 GC-FID 并通过 GC-MS 验证了 28 种萜烯。根据四氢大麻酸/大麻二酚酸(THCA/CBDA)的比例,植物的化学型从一开始就很明显,并且在生长过程中保持稳定。确定了主要大麻素和萜烯的浓度,并发现不同化学型之间存在不同的模式。特别是来自化学型 II 和 III 的植物需要更多的时间才能达到 THCA、CBDA 和单萜的峰值产量。不同化学型之间和单萜与倍半萜演化模式之间的大麻萜酚发育也存在差异。不同化学型的植物通过其萜烯含量明显区分开来,并确定了每种化学型的特征萜烯。

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