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迷迭香叶、花、茎和根发育过程中的类黄酮分布。生物合成途径的推测。

Flavonoid distribution during the development of leaves, flowers, stems, and roots of Rosmarinus officinalis. postulation of a biosynthetic pathway.

作者信息

del Baño María José, Lorente Juan, Castillo Julián, Benavente-García Obdulio, Marín María Piedad, Del Río José Antonio, Ortuño Ana, Ibarra Isidro

机构信息

Research and Development Department, Nutrafur-Furfural Español S.A., Camino Viejo de Pliego s/n, 80320 Alcantarilla, Murcia, Spain.

出版信息

J Agric Food Chem. 2004 Aug 11;52(16):4987-92. doi: 10.1021/jf040078p.

Abstract

The distribution of seven flavonoids, eriocitrin, luteolin 3'-O-beta-d-glucuronide, hesperidin, diosmin, isoscutellarein 7-O-glucoside, hispidulin 7-O-glucoside, and genkwanin, has been studied in Rosmarinus officinalis leaves, flowers, stems, and roots during plant growth. The maximum level reached by luteolin 3'-O-beta-d-glucuronide in leaves during June-August suggests the existence of a delay between the activation of the enzymes involved in the flavanone and flavone biosynthesis. The presence of hesperidin and diosmin in the vascular system is significant, and hesperidin shows even higher levels than the phenolic diterpenes and rosmarinic acid. The distribution of flavonoids observed in R. officinalis suggests a functional and structural relationship between phytoregulators and flavonoids, where flavonoids would be "protectors" of the activity of phytoregulators. A hypothesis for the general pathway of biosynthesis of these compounds in plants of the family Labiatae is proposed.

摘要

在迷迭香植物生长期间,对七种黄酮类化合物(圣草次苷、木犀草素3'-O-β-D-葡萄糖醛酸苷、橙皮苷、地奥司明、异野黄芩素7-O-葡萄糖苷、滨蓟黄素7-O-葡萄糖苷和芫花素)在迷迭香叶、花、茎和根中的分布情况进行了研究。6月至8月期间,木犀草素3'-O-β-D-葡萄糖醛酸苷在叶中达到的最高水平表明,黄烷酮和黄酮生物合成中涉及的酶的激活之间存在延迟。橙皮苷和地奥司明在维管系统中的存在意义重大,且橙皮苷的含量甚至高于酚类二萜和迷迭香酸。在迷迭香中观察到的黄酮类化合物分布表明,植物生长调节剂与黄酮类化合物之间存在功能和结构关系,其中黄酮类化合物可能是植物生长调节剂活性的“保护者”。本文提出了唇形科植物中这些化合物生物合成的一般途径假说。

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