Dipartimento di Scienza e Tecnologia Del Farmaco, Università di Torino, Via P. Giuria 9, 10125, Torino, Italy.
Dipartimento di Scienze Della Vita e Dell'Ambiente, Sezione di Botanica, Università di Cagliari, Viale Sant'Ignazio da Laconi 13, 09123, Cagliari, Italy.
Phytochemistry. 2019 May;161:21-27. doi: 10.1016/j.phytochem.2019.02.005. Epub 2019 Feb 22.
Ptilostemon casabonae (L.) Greuter is a Mediterranean endemism traditionally used for its health-giving properties. Little is known about this species, therefore this study provides additional information about the phytochemical and biomolecular patterns of this plant, to have a combined fingerprint as a taxonomic tool. Several P. casabonae specimens were therefore collected from three different sites, two from Sardinia (Italy) and one from Corsica and the hydroalcoholic extracts of their aerial parts were investigated through HPLC-PDA-MS/MS analysis to study the phenolic composition. Quercetin, luteolin, kaempferol, apigenin and diosmetin O-glycosides, and caffeoylquinic acid derivatives were found as main components. Samples from the three sites showed similar phenolic profiles, although statistical analyses highlighted some quantitative differences for several compounds. The biomolecular analysis included amplification and sequencing of ITS, 5S-rRNA-NTS and psbA regions. No difference was found in the nucleotides among the P. casabonae samples from different geographical origins; however, a comparison with other Ptilostemon species sequences from Genbank, revealed an interspecific variability of ITS and psbA regions. The combination of the results of the phytochemical and biomolecular studies provide information on P. casabonae useful to depict this little-known plant, which can also be applied for future investigations and to obtain a fingerprint of it. Moreover, the stability of the phenolic profile within the species affords to identify a set of specialised metabolites useful for its chemotaxonomic characterization. At the same time, the stability of the biomolecular profile of P. casabonae, and the identification of sequences specific for this species, enables to identify useful biomolecular markers to distinguish it unequivocally.
皮托斯特蒙·卡萨博纳(L.)格雷特是一种地中海特有种,传统上因其有益健康的特性而被使用。关于这个物种知之甚少,因此本研究提供了关于这种植物的植物化学和生物分子模式的附加信息,以作为分类工具的综合指纹。因此,从三个不同的地点收集了几个皮托斯特蒙·卡萨博纳的标本,两个来自撒丁岛(意大利),一个来自科西嘉岛,并通过 HPLC-PDA-MS/MS 分析研究了其地上部分的水醇提取物,以研究其酚类成分。发现槲皮素、木樨草素、山奈酚、芹菜素和染料木素 O-糖苷以及咖啡酰奎宁酸衍生物为主要成分。来自三个地点的样本显示出相似的酚类图谱,尽管统计分析突出了几种化合物的一些定量差异。生物分子分析包括 ITS、5S-rRNA-NTS 和 psbA 区域的扩增和测序。来自不同地理起源的皮托斯特蒙·卡萨博纳样本之间的核苷酸没有差异;然而,与 Genbank 中其他皮托斯特蒙物种序列的比较显示 ITS 和 psbA 区域存在种间变异性。植物化学和生物分子研究结果的结合提供了有关皮托斯特蒙·卡萨博纳的信息,这些信息有助于描绘这种鲜为人知的植物,也可应用于未来的研究,并获得其指纹。此外,该物种内酚类图谱的稳定性可鉴定出一组用于其化学分类特征的专用代谢物。同时,皮托斯特蒙·卡萨博纳的生物分子图谱的稳定性和鉴定出的该物种特有的序列,可以识别出有用的生物分子标记物,以便明确地区分它。