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云杉属内和种间萜烯谱差异的顶空 GC-MS 分析。

Headspace GC-MS analysis of differences in intra- and interspecific Terpene profiles of Picea pungens Engelm. and P. abies (L.) Karst.

机构信息

Department of Chemistry, Eastern Mennonite University, 1200 Park Road, Harrisonburg, VA, 22802, USA.

Department of Chemistry, Eastern Mennonite University, 1200 Park Road, Harrisonburg, VA, 22802, USA.

出版信息

Phytochemistry. 2021 Jan;181:112541. doi: 10.1016/j.phytochem.2020.112541. Epub 2020 Oct 21.

Abstract

Conifer terpenes mediate a number of ecological roles such as deterring herbivory and allelopathic (plant-plant) communication. These terpenes also effect air quality and climate models and are used in chemotaxonomic studies. Herein we report on variation in both intra- and interspecific spruce terpenes using static headspace gas chromatography mass spectrometry (HS-GC-MS) and principal component analysis (PCA) of 'fingerprint' volatile profiles. Samples of blue spruce (Picea pungens), Norway spruce (P. abies), and cedar of Lebanon (Cedrus libani), an outgroup control, were analyzed by HS-GC-MS using both chiral and achiral GC columns. Headspace sampling parameters, temperature and heating time, were optimized to maximize detected terpenes. PCA of terpene 'fingerprint' profiles showed differences by species, by individual trees, but perhaps surprisingly not by environmental conditions. Analysis of blue and Norway spruce over several months show that volatile emissions remained remarkably constant unlike cedar of Lebanon, which showed a much greater variation in volatile profiles. Branches and buds from both spruces were found to release greater amounts of terpenes than samples of needles. The enantiomeric compositions of seven chiral monoterpenes were found to be largely similar between the three conifers with the exception of (-)-α-pinene, which was the dominant enantiomer released by Norway spruce and cedar of Lebanon, while (+)-α-pinene slightly predominated in blue spruce. While not the primary focus of this work, we believe this constitutes the first report on the enantiomeric composition of terpenes in cedar of Lebanon.

摘要

针叶树萜烯具有多种生态作用,如阻止食草和化感(植物-植物)通讯。这些萜烯还影响空气质量和气候模型,并用于化学分类学研究。本文报告了使用静态顶空气相色谱-质谱法(HS-GC-MS)和“指纹”挥发性特征的主成分分析(PCA),对同种和种间云杉萜烯的变化。使用手性和非手性 GC 柱,通过 HS-GC-MS 分析了蓝云杉(Picea pungens)、挪威云杉(P. abies)和黎巴嫩雪松(Cedrus libani)样本,后者为外群对照。对头空间采样参数,即温度和加热时间进行了优化,以最大限度地检测到萜烯。萜烯“指纹”图谱的 PCA 显示了物种之间、个体树之间的差异,但令人惊讶的是,环境条件没有差异。对蓝云和挪威云杉进行了几个月的分析,结果表明挥发性排放保持相当稳定,而黎巴嫩雪松的挥发性特征则变化很大。与针叶相比,两种云杉的树枝和芽释放出的萜烯量更大。在三种针叶树中,除了 (-)-α-蒎烯外,七种手性单萜的对映体组成在很大程度上是相似的,(-)-α-蒎烯是挪威云杉和黎巴嫩雪松释放的主要对映体,而 (+)-α-蒎烯在蓝云杉中略占优势。虽然这不是这项工作的主要重点,但我们相信这是黎巴嫩雪松萜烯对映体组成的首次报告。

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