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Effects of Water Availability in the Soil on Tropane Alkaloid Production in Cultivated Datura stramonium

机译:土壤水分利用对曼陀罗栽培中生物碱生物量的影响。

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摘要

Background: different Solanaceae and Erythroxylaceae species produce tropane alkaloids. These alkaloids are the starting material in the production of different pharmaceuticals. The commercial demand for tropane alkaloids is covered by extracting them from cultivated plants. Datura stramonium is cultivated under greenhouse conditions as a source of tropane alkaloids. Here we investigate the effect of different levels of water availability in the soil on the production of tropane alkaloids by D. stramonium. Methods: We tested four irrigation levels on the accumulation of tropane alkaloids. We analyzed the profile of tropane alkaloids using an untargeted liquid chromatography/mass spectrometry method. Results: Using a combination of informatics and manual interpretation of mass spectra, we generated several structure hypotheses for signals in D. stramonium extracts that we assign as putative tropane alkaloids. Quantitation of mass spectrometry signals for our structure hypotheses across different anatomical organs allowed us to identify patterns of tropane alkaloids associated with different levels of irrigation. Furthermore, we identified anatomic partitioning of tropane alkaloid isomers with pharmaceutical applications. Conclusions: Our results show that soil water availability is an effective method for maximizing the production of specific tropane alkaloids for industrial applications.
机译:背景:茄科和赤藓科物种产生的托烷生物碱。这些生物碱是生产不同药物的原料。通过从栽培植物中提取来满足对托烷生物碱的商业需求。曼陀罗在温室条件下种植,作为托烷生物碱的来源。在这里,我们研究了土壤中不同水平的水可利用性对D. stramonium生产托烷生物碱的影响。方法:我们测试了四个灌溉水平下对托烷生物碱的积累。我们使用非靶向液相色谱/质谱法分析了托烷生物碱的概况。结果:结合信息学和质谱的手动解释,我们为D. stramonium提取物中的信号生成了几种结构假设,我们将其指定为推定的托烷生物碱。在不同解剖器官中对我们的结构假设进行的质谱信号定量分析,使我们能够确定与不同灌溉水平相关的托烷生物碱的模式。此外,我们确定了药学应用对托烷生物碱异构体的解剖学分区。结论:我们的研究结果表明,土壤水有效性是最大化工业应用中特定托烷生物碱产量的有效方法。

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