{"title":"Flower colors and their anthocyanins in Platycodon grandiflorus (Jacq.) A. DC. (Campanulaceae)","authors":"Fumi Tatsuzawa , Kanae Takahashi , Hiroyuki Sano , Haruka Seto , Yuko Mitobe , Toshio Ando","doi":"10.1016/j.phytol.2024.04.002","DOIUrl":null,"url":null,"abstract":"<div><p>The flower colors and anthocyanin composition of three strains (consisting of 18 cultivars) of <em>Platycodon grandiflorus</em> (Jacq.) A. DC. were surveyed to assess the relationship between these two parameters. Eleven anthocyanins, four flavones, chlorogenic acid, and 1-<em>O</em>-(<em>trans</em>-caffeoyl)-β-glucopyranoside were isolated from the flowers of these cultivars, and their structures were identified using chemical and spectroscopic methods. Among them, three undescribed anthocyanins, i.e., cyanidin 3-<em>O</em>-[6-<em>O</em>-(α-rhamnopyranosyl)-β-glucopyranoside]-7-<em>O</em>-[6-<em>O</em>-(4-<em>O</em>-(6-<em>O</em>-(4-<em>O</em>-(β-glucopyranosyl)-<em>trans</em>-caffeoyl)-β-glucopyranosyl)-<em>trans</em>-caffeoyl)-β-glucopyranoisde] (for convenience, we termed this undescribed anthocyanin as purproplatyconin), pelargonidin 3-<em>O</em>-[6-<em>O</em>-(α-rhamnopyranosyl)-β-glucopyranoside]-7-<em>O</em>-[6-<em>O</em>-(4-<em>O</em>-(6-<em>O</em>-(4-<em>O</em>-(β-glucopyranosyl)-<em>trans</em>-caffeoyl)-β-glucopyranosyl)-<em>trans</em>-caffeoyl)-β-glucopyranoside] (for convenience, we termed this undescribed anthocyanin as rubroplatyconin), and pelargonidin 3-<em>O</em>-[6-<em>O</em>-(α-rhamnopyranosyl)-β-glucopyranoside]-7-<em>O</em>-[6-<em>O</em>-(4-<em>O</em>-(β-glucopyranosyl)-<em>trans</em>-caffeoyl)-β-glucopyranoside], were discovered in the corollas of the ‘Astra Pink’ and ‘Omotenashi Pink’ cultivars. Moreover, pelargonidin 3-<em>O</em>-[6-<em>O</em>-(α-rhamnopyranosyl)-β-glucopyranoside]-7-<em>O</em>-(β-glucopyranoside), pelargonidin 3-<em>O</em>-[6-<em>O</em>-(α-rhamnopyranosyl)-β-glucopyranoside], cyanidin 3-<em>O</em>-[6-<em>O</em>-(α-rhamnopyranosyl)-β-glucopyranoside], and delphinidin 3-<em>O</em>-[6-<em>O</em>-(α-rhamnopyranosyl)-β-glucopyranoside] were also discovered in these cultivars for the first time in <em>P. grandiflorus</em>. The structures, conditions, and concentrations of these anthocyanins, as well as their intramolecular co-pigmentation effects were considered to be responsible for the flower color variation observed in <em>P. grandiflorus</em> cultivars.</p></div>","PeriodicalId":20408,"journal":{"name":"Phytochemistry Letters","volume":"61 ","pages":"Pages 125-134"},"PeriodicalIF":1.3000,"publicationDate":"2024-04-14","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.sciencedirect.com/science/article/pii/S1874390024000569/pdfft?md5=df925f3f9308b8f213c4f96b5324ce1a&pid=1-s2.0-S1874390024000569-main.pdf","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Phytochemistry Letters","FirstCategoryId":"99","ListUrlMain":"https://www.sciencedirect.com/science/article/pii/S1874390024000569","RegionNum":4,"RegionCategory":"生物学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q4","JCRName":"CHEMISTRY, MEDICINAL","Score":null,"Total":0}
引用次数: 0
Abstract
The flower colors and anthocyanin composition of three strains (consisting of 18 cultivars) of Platycodon grandiflorus (Jacq.) A. DC. were surveyed to assess the relationship between these two parameters. Eleven anthocyanins, four flavones, chlorogenic acid, and 1-O-(trans-caffeoyl)-β-glucopyranoside were isolated from the flowers of these cultivars, and their structures were identified using chemical and spectroscopic methods. Among them, three undescribed anthocyanins, i.e., cyanidin 3-O-[6-O-(α-rhamnopyranosyl)-β-glucopyranoside]-7-O-[6-O-(4-O-(6-O-(4-O-(β-glucopyranosyl)-trans-caffeoyl)-β-glucopyranosyl)-trans-caffeoyl)-β-glucopyranoisde] (for convenience, we termed this undescribed anthocyanin as purproplatyconin), pelargonidin 3-O-[6-O-(α-rhamnopyranosyl)-β-glucopyranoside]-7-O-[6-O-(4-O-(6-O-(4-O-(β-glucopyranosyl)-trans-caffeoyl)-β-glucopyranosyl)-trans-caffeoyl)-β-glucopyranoside] (for convenience, we termed this undescribed anthocyanin as rubroplatyconin), and pelargonidin 3-O-[6-O-(α-rhamnopyranosyl)-β-glucopyranoside]-7-O-[6-O-(4-O-(β-glucopyranosyl)-trans-caffeoyl)-β-glucopyranoside], were discovered in the corollas of the ‘Astra Pink’ and ‘Omotenashi Pink’ cultivars. Moreover, pelargonidin 3-O-[6-O-(α-rhamnopyranosyl)-β-glucopyranoside]-7-O-(β-glucopyranoside), pelargonidin 3-O-[6-O-(α-rhamnopyranosyl)-β-glucopyranoside], cyanidin 3-O-[6-O-(α-rhamnopyranosyl)-β-glucopyranoside], and delphinidin 3-O-[6-O-(α-rhamnopyranosyl)-β-glucopyranoside] were also discovered in these cultivars for the first time in P. grandiflorus. The structures, conditions, and concentrations of these anthocyanins, as well as their intramolecular co-pigmentation effects were considered to be responsible for the flower color variation observed in P. grandiflorus cultivars.
期刊介绍:
Phytochemistry Letters invites rapid communications on all aspects of natural product research including:
• Structural elucidation of natural products
• Analytical evaluation of herbal medicines
• Clinical efficacy, safety and pharmacovigilance of herbal medicines
• Natural product biosynthesis
• Natural product synthesis and chemical modification
• Natural product metabolism
• Chemical ecology
• Biotechnology
• Bioassay-guided isolation
• Pharmacognosy
• Pharmacology of natural products
• Metabolomics
• Ethnobotany and traditional usage
• Genetics of natural products
Manuscripts that detail the isolation of just one new compound are not substantial enough to be sent out of review and are out of scope. Furthermore, where pharmacology has been performed on one new compound to increase the amount of novel data, the pharmacology must be substantial and/or related to the medicinal use of the producing organism.