Konarska Agata
Department of Botany, Faculty of Horticulture and Landscape Architecture, University of Life Sciences in Lublin, Akademicka 15, 20-950, Lublin, Poland.
Protoplasma. 2018 Nov;255(6):1839-1854. doi: 10.1007/s00709-018-1277-2. Epub 2018 Jun 15.
Lycium barbarum L. fruits, referred to as functional food, have long been used in traditional and folk herbal medicine due to their therapeutic properties. The fruit microstructure was analysed using light, scanning and transmission electron microscopes. The distribution of bioactive compounds in drupe tissues was assessed with histochemical and fluorescence assays. The analysis of the microstructure has shown that the fruit is covered by a skin with an amorphous cuticle and a layer of amorphous epicuticular waxes on the surface. The skin is composed of a single-layered epidermis with thickened walls and one layer of hypodermis with slightly thickened periclinal walls. The pericarp cells contain different types of chromoplasts, which most often contained exhibited reticulotubules/fibrils of carotenoid pigments and phytoferritine deposits. The results of the histochemical assays demonstrated that the secondary metabolites with high phytotherapeutic importance were located in all layers of the pericarp and seeds and, specifically, in the drupe exocarp and endocarp. The phytochemicals were represented by polysaccharides (LBP), lipid compounds (carotenoids, essential oils, sesquiterpenes, steroids), polyphenols (tannins and flavonoids), and alkaloids. This study, which is the first report of the microstructure and localisation of bioactive compounds in wolfberries, is a valuable complement of phytochemical analyses and can be helpful for enhancement of the therapeutic effect of the fruit as well as preliminary assessment of the medicinal potential in the search for new pharmaceuticals. Detailed anatomical studies are crucial for exploration of determinants of fruit quality and useful for identification of diagnostic taxonomic traits.
枸杞果实,被称为功能性食品,因其治疗特性长期以来一直用于传统和民间草药。使用光学显微镜、扫描电子显微镜和透射电子显微镜对果实微观结构进行了分析。通过组织化学和荧光分析评估了生物活性化合物在核果组织中的分布。微观结构分析表明,果实表面覆盖着一层具有无定形角质层和一层无定形表皮蜡质的果皮。果皮由单层表皮组成,表皮细胞壁增厚,还有一层下皮层,其平周壁略有增厚。果皮细胞含有不同类型的有色体,其中最常见的是含有类胡萝卜素色素的网状小管/纤维和植物铁蛋白沉积物。组织化学分析结果表明,具有高植物治疗重要性的次生代谢产物存在于果皮和种子的所有层中,特别是在核果外果皮和内果皮中。植物化学物质包括多糖(枸杞多糖)、脂质化合物(类胡萝卜素、精油、倍半萜、类固醇)、多酚(单宁和黄酮类化合物)和生物碱。本研究首次报道了枸杞生物活性化合物的微观结构和定位,是植物化学分析的重要补充,有助于提高果实的治疗效果以及在寻找新药物时对药用潜力的初步评估。详细的解剖学研究对于探索果实品质的决定因素至关重要,有助于识别诊断分类特征。