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菜蓟族(Cass.) Dumort.(菊科菊苣族, Asteraceae)倍半萜烯类化合物:分布、(13)C NMR 波谱数据和生物活性。

Sesquiterpenoids in subtribe Centaureinae (Cass.) Dumort (tribe Cardueae, Asteraceae): distribution, (13)C NMR spectral data and biological properties.

机构信息

STEBICEF, Section of Chemistry, University of Palermo, Viale delle Scienze, Parco d'Orleans II, 90128 Palermo, Italy.

出版信息

Phytochemistry. 2013 Nov;95:19-93. doi: 10.1016/j.phytochem.2013.07.002. Epub 2013 Aug 12.

Abstract

Asteraceae Bercht. & J. Presl is one of the biggest and most economically important plant families. The taxonomy and phylogeny of Asteraceae is rather complex and according to the latest and most reliable taxonomic classification of Panero & Funk, based on the analysis of nine chloroplast regions, the family is divided into 12 subfamilies and 35 tribes. One of the largest tribes of Asteraceae is Cardueae Cass. with four subtribes (Carlininae, Echinopinae, Carduinae and Centaureinae) and more than 2500 species. Susanna & Garcia-Jacas have organized the genera of Centaureinae (about 800 species) into seven informal groups, which recent molecular studies have confirmed: 1. Basal genera; 2. Volutaria group; 3. Rhaponticum group; 4. Serratula group; 5. Carthamus group; 6. Crocodylium group; 7. Centaurea group. This review summarizes reports on sesquiterpenoids from the Centaureinae subtribe of the Asteraceae family, as well as the (13)C NMR spectral data described in the literature. It further reviews studies concerning the biological activities of these metabolites. For this work, literature data on sesquiterpenes from the Centaureinae subtribe were retrieved with the help of the SciFinder database and other similar data banks. All entries from 1958 until the end of 2011 were considered. This review is addressed to scientists working in the metabolomics field such as chemists, botanists, etc., the spectroscopic data reported make this work a good tool for structural elucidation, the biological section gives useful information to those who wish to study the structure activity relationships.

摘要

菊科 Bercht. & J. Presl 是最大和最重要的经济植物科之一。菊科的分类学和系统发育相当复杂,根据 Panero & Funk 的最新和最可靠的分类学分类,基于对九个质体区域的分析,该科分为 12 个亚科和 35 个族。菊科最大的族之一是蓟科 Cass.,有四个亚族(蓟亚族、刺苞果亚族、蓟族和矢车菊族)和超过 2500 种。Susanna & Garcia-Jacas 根据最近的分子研究,将矢车菊族(约 800 种)的属组织成七个非正式组:1. 基础属;2. 卷毛组;3. 飞蓬组;4. 乳果组;5. 蓟属组;6. 罂粟组;7. 矢车菊属组。本综述总结了菊科蓟亚科倍半萜类化合物的报道,以及文献中描述的(13)C NMR 谱数据。它进一步综述了这些代谢物的生物活性研究。为此,借助 SciFinder 数据库和其他类似数据库检索了关于蓟亚科倍半萜的文献数据。考虑了从 1958 年到 2011 年底的所有条目。本综述面向从事代谢组学领域的科学家,如化学家、植物学家等,报告的光谱数据使这项工作成为结构阐明的良好工具,生物学部分为那些希望研究结构活性关系的人提供了有用的信息。

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