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横断山区斑茎蝇子草的化学和遗传多样性。与小斑蝇子草的化学关系。

Chemical and Genetic Diversity of Ligularia kanaitzensis in the Hengduan Mountains Area. Chemical Relationship with L. subspicata.

机构信息

Department of Life Science and Research Center of Life Science, Rikkyo University, Nishi-Ikebukuro, Toshima-ku, Tokyo, 171-8501, Japan.

Faculty of Pharmaceutical Sciences, Tokushima Bunri University, Yamashiro-cho, Tokushima, 770-8514, Japan.

出版信息

Chem Biodivers. 2021 Nov;18(11):e2100444. doi: 10.1002/cbdv.202100444. Epub 2021 Oct 20.

Abstract

Root chemicals and the sequences of the internal transcribed spacers (ITSs) were analyzed for 9 Ligularia kanaitzensis and 3 L. subspicata samples collected in northwestern Yunnan and southwestern Sichuan, China. Subspicatins A and C were isolated from two L. kanaitzensis samples. Introgression of genes responsible for these compounds from L. subspicata was suggested by their strong connection with L. subspicata/L. lamarum and the geographical proximity of the samples to L. subspicata. DNA analysis of a set of 27 L. kanaitzensis samples including those analyzed previously showed that they belong to two clades, designated A and B. Together with the presence/absence of furanoeremophilane, the 27 samples were sorted into three groups: clade A/furan, clade B/furan, and clade B/non-furan. The ancestral plant presumably belonged to clade B/non-furan, because furanoeremophilanes are biosynthesized from eremophilan-8-ones. 1β-Angeloyloxyfukinone, a likely intermediate between fukinone and subspicatin C, was isolated for the first time. This finding allowed us to propose plausible biosynthetic pathways of subspicatins A and C.

摘要

对采自中国滇西北和川西南的 9 份甘青橐吾和 3 份甘青橐吾亚属植物样本的根化学物质和内转录间隔区(ITS)序列进行了分析。从两个甘青橐吾样本中分离出亚属 A 和 C。这些化合物的基因可能来自甘青橐吾亚属,这与其与甘青橐吾/拉马克和样本与甘青橐吾亚属的地理接近性有关。对包括之前分析的样本在内的 27 个甘青橐吾样本的一组 DNA 分析表明,它们属于两个分支,分别命名为 A 和 B。结合呋喃佛烷的存在/缺失情况,27 个样本被分为三组:A 分支/呋喃,B 分支/呋喃和 B 分支/非呋喃。因为呋喃佛烷类化合物是从佛烷-8-酮生物合成的,所以推测原始植物属于 B 分支/非呋喃类。首次分离到 1β-当归酰氧基福堇酮,这是福堇酮和亚属 C 之间的一个可能的中间产物。这一发现使我们能够提出亚属 A 和 C 的合理生物合成途径。

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