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紫草培养茎段上紫草素衍生物的形成

Shikonin derivative formation on the stem of cultured shoots in Lithospermum erythrorhizon.

作者信息

Touno K, Harada K, Yoshimatsu K, Yazaki K, Shimomura K

机构信息

Graduate School of Sciences and Technology, Chiba University, 648 Matsudo, Matsudo, Chiba, 271-0092 Japan, , , , , , JP.

Tsukuba Medicinal Plant Research Station, National Institute of Health Sciences, 1 Hachimandai, Tsukuba, Ibaraki, 305-0843 Japan Fax: +81-298-380575, , , , , , JP.

出版信息

Plant Cell Rep. 2000 Nov;19(11):1121-1126. doi: 10.1007/s002990000237.

Abstract

LITHOSPERMUM ERYTHRORHIZON

, which are capable of producing red pigments, have been established. The red pigments were formed on the stems of L. erythrorhizon shoots cultured both on solid and in liquid media without phytohormones at 25 °C in the dark. Thin-layer chromatography, high-performance liquid chromatography and H nuclear magnetic resonance analyses revealed that the red pigments which accumulated on the cultured shoots were shikonin derivatives. The effects of various basal media and phytohormones (indole-3-acetic acid, indole-3-butyric acid and kinetin) on the growth and the formation of shikonin derivatives were investigated. When the shoots were cultured on Murashige and Skoog solid medium, the addition of kinetin remarkably enhanced shikonin derivative accumulation in the shoots. However, these effects of kinetin were not observed in the liquid culture when cultured in Gamborg B5 medium. The maximum content of shikonin derivatives (2.3% as dry weight, ca. 1.5 mg/100 ml flask) was observed in the shoots cultured in phytohormone-free B5 liquid medium for 5 weeks.

摘要

已培育出能够产生红色素的紫草。这些红色素是在不含植物激素的固体和液体培养基上,于25℃黑暗条件下培养的紫草嫩枝茎上形成的。薄层色谱、高效液相色谱和氢核磁共振分析表明,在培养的嫩枝上积累的红色素是紫草素衍生物。研究了各种基础培养基和植物激素(吲哚-3-乙酸、吲哚-3-丁酸和激动素)对紫草素衍生物生长和形成的影响。当嫩枝在Murashige和Skoog固体培养基上培养时,添加激动素显著提高了嫩枝中紫草素衍生物的积累。然而,在Gamborg B5培养基中进行液体培养时,未观察到激动素的这些作用。在无植物激素的B5液体培养基中培养5周的嫩枝中,紫草素衍生物的含量最高(干重为2.3%,约1.5毫克/100毫升烧瓶)。

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