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Distinct metabolic pathways drive monoterpenoid biosynthesis in a natural population of Pelargonium graveolens

机译:不同的代谢途径在天竺葵的天然群体中挥动单萜类生物合成

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摘要

Pelargonium graveolens is a wild predecessor to rose-scented geranium hybrids prized for their essential oils used as fragrances and flavorings. However, little is known about their biosynthesis. Here we present metabolic evidence that at least two distinct monoterpene biosynthetic pathways contribute to their volatile profiles, namely, cyclic p-menthanes such as (-)-isomenthone and acyclic monoterpene alcohols such as geraniol and (-)-citronellol and their derivatives (referred to here as citronelloid monoterpenes). We established their common origin via the 2C-methyl-D-erythritol-4-phosphate pathway but found no indication these pathways share common intermediates beyond geranyl diphosphate. Untargeted volatile profiling of 22 seed-grown P graveolens lines demonstrated distinct chemotypes that preferentially accumulate (-)-isomenthone, geraniol, or (-)-citronellol along with approximately 85 minor volatile products. Whole plant (CO2)-C-13 isotopic labeling performed under physiological conditions permitted us to measure the in vivo rates of monoterpenoid accumulation in these lines and quantify differences in metabolic modes between chemotypes. We further determined that p-menthane monoterpenoids in Pelargonium are likely synthesized from (+)-limonene via (+)-piperitone rather than (+)-pulegone. Exploitation of this natural population enabled a detailed dissection of the relative rates of competing p-menthane and citronelloid pathways in this species, providing real time rates of monoterpene accumulation in glandular trichomes.
机译:Pelargonium graveolens是一种野生前身,以玫瑰香味的天竺葵杂交种,以它们的精油用作香料和调味剂。然而,对他们的生物合成而言很少。在这里,我们提出了代谢证据,即至少两个不同的单萜的生物合成途径有助于它们的挥发性型材,即环状p-inthanes,例如( - ) - Isomenthone和无循环单萜醇,如Geraniol和( - ) - Citronellol及其衍生物(参考在这里作为Citronelloid单口萜烯)。我们通过2℃-甲基-D-赤藓糖醇-4-磷酸途径建立了常见的原点,但发现没有指示这些途径在二烷基二磷酸二磷酸二磷酸盐之外的常见中间体。 22种种子生长的P Graveolens系列的未确定挥发性分析显示出明显的趋化型,优先积累( - ) - isomenthone,酸甲苯或( - ) - 香橼和( - ) - 香橼以及约85种较小的挥发性产品。在生理条件下进行的全植物(CO2)-C-13同位素标记允许我们测量这些系列中的单萜类积累的体内速率,并量化趋化型之间代谢模式的差异。我们进一步确定了天竺葵中的p-menthane单萜类单萜类化合物可能从(+) - 柠檬烯(+) - 哌啶酮而不是(+) - 瓜酮合成。这种天然群体的利用使得能够详细解剖该物种中竞争性p-menthane和香橼途径的相对速率,从而提供腺体胎儿中的单萜累积的实时速率。

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