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The Yield of Essential Oils in Melaleuca alternifolia (Myrtaceae) Is Regulated through Transcript Abundance of Genes in the MEP Pathway

机译:通过MEP途径中基因转录本的丰度来调节互生白千层(桃金娘科)中精油的产量

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摘要

Medicinal tea tree (Melaleuca alternifolia) leaves contain large amounts of an essential oil, dominated by monoterpenes. Several enzymes of the chloroplastic methylerythritol phosphate (MEP) pathway are hypothesised to act as bottlenecks to the production of monoterpenes. We investigated, whether transcript abundance of genes encoding for enzymes of the MEP pathway were correlated with foliar terpenes in M. alternifolia using a population of 48 individuals that ranged in their oil concentration from 39 -122 mg.g DM−1. Our study shows that most genes in the MEP pathway are co-regulated and that the expression of multiple genes within the MEP pathway is correlated with oil yield. Using multiple regression analysis, variation in expression of MEP pathway genes explained 87% of variation in foliar monoterpene concentrations. The data also suggest that sesquiterpenes in M. alternifolia are synthesised, at least in part, from isopentenyl pyrophosphate originating from the plastid via the MEP pathway.
机译:药用茶树(Melaleuca alternifolia)叶含有大量的精油,其中以单萜类为主。假设氯塑料甲基赤藓糖醇磷酸酯(MEP)途径的几种酶充当生产单萜的瓶颈。我们调查了48名个体的种群,这些种群的MEP途径酶编码基因的转录丰度是否与互叶烟草中的叶萜相关,其油浓度从39 -122 mg.g DM 。我们的研究表明,MEP途径中的大多数基因是共同调控的,并且MEP途径中多个基因的表达与产油量相关。使用多元回归分析,MEP途径基因表达的变化解释了叶单萜浓度变化的87%。数据还表明,互生孢子虫中的倍半萜烯至少部分由经由MEP途径源自质体的焦磷酸异戊烯基合成。

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