New insight in secretory structures and secretion composition in Rhus typhina L. – Anatomical, histochemical, and ultrastructural studies

IF 2.5 3区 工程技术 Q1 MICROSCOPY
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Abstract

Rhus typhina is a valuable plant used in the pharmaceutical, cosmetic, and food industries due to the presence of biologically active substances accumulated in its organs, especially in secretory structures, i.e. trichomes and secretory ducts. Light microscopy, scanning electron microscopy, and transmission electron microscopy were used to examine the structure of glandular and non-glandular trichomes, as well as secretory ducts present in inflorescence peduncles of R. typhina. The chemical composition of the secretion produced by trichomes and ducts was assessed using histochemical techniques, including observations under brightfield and fluorescence microscopes. Two types of capitate glandular trichomes producing secretions with a similar composition and non-glandular trichomes exhibiting secretory activity were identified. The secretion of glandular trichomes was dominated by acidic and neutral lipids, essential oil, sesquiterpenes, and steroid-containing terpenes. The schizogenic secretory ducts located in the phloem produced a viscous milky substance with acidic polysaccharides, acidic lipids, phenolic compounds, and proteins. The secretion was released into the duct lumen through notches in the walls of the secretory epithelial cell facing the duct lumen. The location, type, and traits of the non-glandular trichomes and secretory structures, as well as the composition of the secreted products are considered important taxonomic features in the family Anacardiaceae and the Rhus genus. Additionally, these characters are important diagnostic markers for the pharmacobotanical identification of the species in medicinal and cosmetic raw materials. The various compounds present in the secretory structures of R. typhina may contribute to plant protection against pathogens or herbivory and probably play a role as attractants for pollinators and seed dispersers.

斑鸠菊分泌结构和分泌物组成的新见解--解剖学、组织化学和超微结构研究。
酪氨酸麝香草是一种可用于制药、化妆品和食品工业的珍贵植物,因为在其器官中,尤其是分泌结构(即毛状体和分泌导管)中积累了生物活性物质。研究人员利用光学显微镜、扫描电子显微镜和透射电子显微镜对酪氨酸苣苔花序梗上的腺毛体、非腺毛体以及分泌导管的结构进行了研究。利用组织化学技术评估了毛状体和导管分泌物的化学成分,包括在明视野和荧光显微镜下进行观察。结果发现了两种类型的头状腺毛体,它们产生的分泌物成分相似,而非腺毛体则具有分泌活性。腺毛体的分泌物主要是酸性和中性脂质、精油、倍半萜和含甾萜的萜类化合物。位于韧皮部的裂殖分泌管产生一种粘性乳状物,其中含有酸性多糖、酸性脂质、酚类化合物和蛋白质。分泌物通过面向导管腔的分泌上皮细胞壁上的缺口释放到导管腔中。非腺体毛状体和分泌结构的位置、类型和性状以及分泌产物的成分被认为是天南星科和胡桃属植物的重要分类特征。此外,这些特征还是药用和化妆品原料中物种药用植物学鉴定的重要诊断标志。酪氨酸酪氨酸苣苔分泌结构中的各种化合物可能有助于保护植物免受病原体或草食动物的侵害,还可能起到吸引传粉昆虫和种子传播者的作用。
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来源期刊
Micron
Micron 工程技术-显微镜技术
CiteScore
4.30
自引率
4.20%
发文量
100
审稿时长
31 days
期刊介绍: Micron is an interdisciplinary forum for all work that involves new applications of microscopy or where advanced microscopy plays a central role. The journal will publish on the design, methods, application, practice or theory of microscopy and microanalysis, including reports on optical, electron-beam, X-ray microtomography, and scanning-probe systems. It also aims at the regular publication of review papers, short communications, as well as thematic issues on contemporary developments in microscopy and microanalysis. The journal embraces original research in which microscopy has contributed significantly to knowledge in biology, life science, nanoscience and nanotechnology, materials science and engineering.
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