Dipartimento di Farmacia, Università di Pisa, Via Bonanno Pisano 6, 56126 Pisa, Italy.
Centro Interdipartimentale di Ricerca "Nutraceutica e Alimentazione per la Salute" (NUTRAFOOD), Università di Pisa, Via del Borghetto 80, 56124 Pisa, Italy.
Molecules. 2022 Dec 6;27(23):8602. doi: 10.3390/molecules27238602.
The Nemo's Garden project is an alternative production system for areas with scarce cultivable land but significant presence of water; thus, it is an interesting intervention to address the climate crisis. This work aimed to evaluate the micromorphological, biochemical, and phytochemical characteristics of (Bertoni) Bertoni grown underwater compared to the terrestrial specimens. The micromorphological analyses, performed on the leaves using light microscopy, fluorescence microscopy, and scanning electron microscopy, evidenced a general uniformity of the trichome morphotype and distribution pattern. The histochemical investigation indicated the simultaneous presence of terpenes and polyphenols in the trichome secreted material from the underwater samples and a prevailing polyphenolic content in the terrestrial specimens; this was also confirmed by biochemical analyses (26.6 mg GAE/g DW). The characterization of non-volatile components, performed using HPLC-MS, showed similar chemical profiles in all the samples, which were characterized by phenolic compounds and steviol glycosides. The volatile compounds, evaluated using HS-SPME coupled with GC-MS, showed sesquiterpene hydrocarbons as the main class in all the analyzed samples (80.1-93.9%). However, the control plants were characterized by a higher content of monoterpene hydrocarbons (12.1%). The underwater biosphere environment did not alter micro-morphological characters, although slight qualitative changes were evidenced for the compounds produced as a response to the growth conditions.
尼莫花园项目是一种针对可耕地稀缺但水资源丰富地区的替代生产系统;因此,它是应对气候危机的一个有趣干预措施。本工作旨在评估与陆地标本相比,水培 (Bertoni) Bertoni 的微观形态学、生物化学和植物化学特性。通过使用光学显微镜、荧光显微镜和扫描电子显微镜对叶片进行的微观形态学分析,证明了毛状体形态和分布模式的总体均匀性。组织化学研究表明,水下样本毛状体分泌物质中同时存在萜类化合物和多酚类化合物,而陆地标本中则以多酚类化合物为主;这也得到了生化分析的证实(26.6mgGAE/gDW)。使用HPLC-MS 进行的非挥发性成分表征显示,所有样品的化学特征相似,均以酚类化合物和甜菊糖苷为特征。使用 HS-SPME 结合 GC-MS 评估的挥发性化合物显示,所有分析样品均以倍半萜类碳氢化合物为主要类(80.1-93.9%)。然而,对照植物的特征是单萜类碳氢化合物含量较高(12.1%)。水下生物圈环境并未改变 的微观形态特征,尽管在对生长条件的反应中,所产生的化合物出现了轻微的定性变化。