首页> 外文期刊>Plant Growth Regulation: An International Journal on Natural and Synthetic Regulators >In vitro conservation, phytochemistry, and medicinal activity of Artemisia tridentata Nutt.: metabolomics as a hypothesisgenerating tool for plant tissue culture
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In vitro conservation, phytochemistry, and medicinal activity of Artemisia tridentata Nutt.: metabolomics as a hypothesisgenerating tool for plant tissue culture

机译:蒿(Artemisia tridentata Nutt。)的体外保存,植物化学和药物活性:代谢组学作为植物组织培养的假说生成工具

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Artemisia tridentata Nutt. and related species in the subgenus Tridentatae are ecologically important plants with a rich history of ceremonial and medicinal use by the indigenous people of North America. With the exception of antimicrobial and insecticidal bioassays, there is limited data to support the traditional uses of A. tridentata. Additionally, wild A. tridentata populations are declining and conservation of genetic resources is warranted. The current study was designed to (a) develop in vitro protocols to conserve A. tridentata in axenic culture and to provide plant tissues for phytochemical analysis, (b) to investigate the presence of neurologicallyactive phytochemicals in A. tridentata and (c) to develop metabolomics as a tool for understanding secondary metabolite biosynthesis under aseptic conditions. A collection of in vitro-grown germplasm lines was established from wild-harvested seeds of A. tridentata. Neurotransmitters acetylcholine, GABA, melatonin and serotonin were identified and quantified in the plant tissues. Crude extracts of A. tridentata inhibited acetylcholinesterase in a bioassay. A metabolomics analysis with chemometric statistics quantified changes in the phytochemical profiles of wild-harvested plants and plantlets in axenic culture. A total of 1,543 phytochemicals were found in all samples of A. tridentata including 52 significant ions putatively identified as monoterpene, phenolic or sesquiterpene compounds. Together, these data provide the foundation for further investigations of the phytochemical diversity and medicinal activity of A. tridentata and demonstrate a research approach for use of metabolomics as a tool for understanding secondary metabolite biosynthesis under aseptic conditions.
机译:蒿(Artemisia tridentata Nutt)。 Tridentatae属中的相关物种和相关物种是具有重要生态意义的植物,在北美土著人民中具有丰富的礼仪和药用历史。除抗菌和杀虫生物测定法外,仅有有限的数据支持三齿曲霉的传统用途。此外,野生曲霉种群正在减少,遗传资源的保护是必要的。当前的研究旨在(a)开发体外方案以保存三叶草在无菌培养中并提供植物组织用于植物化学分析,(b)研究三齿草中神经活性植物化学物质的存在,以及(c)进行开发。代谢组学作为了解无菌条件下次生代谢物生物合成的工具。从A. tridentata的野生收获种子中建立了一系列体外生长的种质系。在植物组织中鉴定并定量了神经递质乙酰胆碱,GABA,褪黑激素和血清素。在生物测定中,三齿草的粗提物抑制了乙酰胆碱酯酶。带有化学计量学统计的代谢组学分析可以量化野生采摘的野生植物和小植株在植物中的化学化学变化。在三齿曲霉的所有样品中共发现1,543种植物化学物质,其中包括52个被认为是单萜,酚或倍半萜化合物的重要离子。总之,这些数据为进一步研究三角曲霉的植物化学多样性和药物活性提供了基础,并证明了将代谢组学作为一种工具来理解无菌条件下次级代谢产物生物合成的研究方法。

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