首页> 外文期刊>Journal of Plant Growth Regulation >Chemical Variation in Essential Oil Profiles Detected Using Headspace Solid-Phase Microextraction Gas Chromatography Spectrometry in Response to Potassium, Nitrogen, and Water Available to Micropropagated Plants of Salvia stenophylla (Burch. ex Benth.)
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Chemical Variation in Essential Oil Profiles Detected Using Headspace Solid-Phase Microextraction Gas Chromatography Spectrometry in Response to Potassium, Nitrogen, and Water Available to Micropropagated Plants of Salvia stenophylla (Burch. ex Benth.)

机译:顶空固相微萃取气相色谱法检测到的钾,氮和水对鼠尾草微繁殖植物(Burch。ex Benth。)提供的钾,氮和水的响应,从而检测到香精油化学成分的变化。

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摘要

The effects of nitrogen, potassium, water stress, and phytohormones were studied using a Salvia stenophylla (Burch. ex Benth.) microplant system. In vitro regeneration was monitored and then followed with volatile secondary metabolite profiling through headspace solid-phase microextraction gas chromatography. Plantlet growth was most prolific on half-strength Murashige and Skoog medium without phytohormones. An increase in macronutrients supplied to the microplants enhanced accumulation of the commercially important (-)-alpha-bisabolol, while no significant changes to the relative abundance of beta-bisabolene, alpha-muurolene, alpha-patchoulene, and D-limonene (among others) became apparent. Water-stressed plants, treated with sorbitol and polyethylene glycol, had a lowered rooting capacity in vitro. Overall, as a plant production system, micropropagation did not have deleterious effects on the biochemistry of S. stenophylla as no significant differences in metabolic profiles existed between conventional garden plants and in vitro propagules, regardless of phytohormone treatment. We also show that nutrient manipulation can be used efficiently as a strategy for positively altering secondary metabolism. This will ultimately benefit the domestication of this commercially important medicinal herb.
机译:使用Salvia stenophylla(Burch。ex Benth。)微型植物系统研究了氮,钾,水分胁迫和植物激素的影响。监测体外再生,然后通过顶空固相微萃取气相色谱分析挥发性次生代谢产物。在没有植物激素的半强度Murashige和Skoog培养基上,幼苗的生长最为丰富。提供给微型植物的大量营养素增加了商业上重要的(-)-α-bisabolol的积累,而β-bisabolene,α-茂三烯,α-广atch烯和D-柠檬烯的相对丰度没有明显变化(尤其是)变得明显。用山梨糖醇和聚乙二醇处理的水分胁迫植物在体外生根能力降低。总体而言,作为一种植物生产系统,无论植物激素如何处理,常规园艺植物和体外繁殖体之间的代谢谱均不存在显着差异,因此,微繁殖对甜叶链球菌的生物化学没有有害影响。我们还表明,营养物操纵可以有效地用作积极改变次级代谢的策略。这最终将有益于这种商业上重要的草药的驯化。

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