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评估(L.)Beauv. 中的化学多样性,这是一种泛热带松叶蕨,已失去许多类似蕨类植物的特征。

Assessing Chemical Diversity in (L.) Beauv., a Pantropical Whisk Fern That Has Lost Many of Its Fern-Like Characters.

作者信息

Šamec Dunja, Pierz Verena, Srividya Narayanan, Wüst Matthias, Lange B Markus

机构信息

Institute of Biological Chemistry and M.J. Murdock Metabolomics Laboratory, Washington State University, Pullman, WA, United States.

Ruđer Bošković Institute, Zagreb, Croatia.

出版信息

Front Plant Sci. 2019 Jul 9;10:868. doi: 10.3389/fpls.2019.00868. eCollection 2019.

Abstract

Members of the Psilotales (whisk ferns) have a unique anatomy, with conducting tissues but lacking true leaves and roots. Based on recent phyogenies, these features appear to represent a reduction from a more typical modern fern plant rather than the persistence of ancestral features. In this study, extracts of several Psilotum organs and tissues were analyzed by Gas Chromatography - Mass Spectrometry (GC-MS) and High Performance Liquid Chromatography - Quadrupole Time of Flight - Mass Spectrometry (HPLC-QTOF-MS). Some arylpyrones and biflavonoids had previously been reported to occur in Psilotum and these metabolite classes were found to be prominent constituents in the present study. Some of these were enriched and further characterized by Nuclear Magnetic Resonance (NMR) spectroscopy. HPLC-QTOF-MS and NMR data were searched against an updated Spektraris database (expanded by incorporating over 300 new arylpyrone and biflavonoid spectral records) to aid significantly with peak annotation. Principal Component Analysis (PCA) with combined GC-MS and HPLC-QTOF-MS data sets obtained with several Psilotum organs and tissues indicated a clear separation of the sample types. The principal component scores for below-ground rhizome samples corresponded to the vectors for carbohydrate monomers and dimers and small organic acids. Above-ground rhizome samples had principal component scores closer to the direction of vectors for arylpyrone glycosides and sucrose (which had high concentrations in above-and below-ground rhizomes). The unique position of brown synangia in a PCA plot correlated with the vector for biflavonoid glycosides. Principal component scores for green and yellow synangia correlated with the direction of vectors for arylpyrone glycosides and biflavonoid aglycones. Localization studies with cross sections of above-ground rhizomes, using Matrix-Assisted Laser Desorption/Ionization - Mass Spectrometry (MALDI-MS), provided evidence for a preferential accumulation of arylpyrone glycosides and biflavonoid aglycones in cells of the chlorenchyma. Our results indicate a differential localization of metabolites with potentially tissue-specific functions in defenses against biotic and abiotic stresses. The data are also a foundation for follow-up work to better understand chemical diversity in the Psilotales and other members of the fern lineage.

摘要

松叶蕨目(松叶蕨)植物具有独特的解剖结构,有传导组织,但没有真正的叶子和根。基于最近的系统发育研究,这些特征似乎是从更典型的现代蕨类植物演化而来的简化形式,而非原始特征的保留。在本研究中,采用气相色谱 - 质谱联用仪(GC-MS)和高效液相色谱 - 四极杆飞行时间质谱联用仪(HPLC-QTOF-MS)对几种松叶蕨器官和组织的提取物进行了分析。此前曾报道松叶蕨中存在一些芳基吡喃酮和双黄酮类化合物,在本研究中发现这些代谢物类别是主要成分。其中一些通过核磁共振(NMR)光谱进行了富集和进一步表征。针对更新后的Spektraris数据库(通过纳入300多条新的芳基吡喃酮和双黄酮类光谱记录进行了扩展)对HPLC-QTOF-MS和NMR数据进行搜索,以显著帮助进行峰注释。对几种松叶蕨器官和组织获得的GC-MS和HPLC-QTOF-MS数据集进行主成分分析(PCA),结果表明样品类型有明显区分。地下根茎样品的主成分得分与碳水化合物单体、二聚体和小有机酸的向量相对应。地上根茎样品的主成分得分更接近芳基吡喃酮糖苷和蔗糖(在地上和地下根茎中含量都很高)的向量方向。棕色孢子囊在PCA图中的独特位置与双黄酮类糖苷的向量相关。绿色和黄色孢子囊的主成分得分与芳基吡喃酮糖苷和双黄酮苷元的向量方向相关。使用基质辅助激光解吸/电离质谱(MALDI-MS)对地上根茎横切面进行定位研究,结果表明在叶肉细胞中芳基吡喃酮糖苷和双黄酮苷元有优先积累。我们的结果表明,具有潜在组织特异性功能的代谢物在抵御生物和非生物胁迫方面存在差异定位。这些数据也是后续工作的基础,有助于更好地了解松叶蕨目及蕨类植物谱系中其他成员的化学多样性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc97/6629931/188a5fe9e391/fpls-10-00868-g001.jpg

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