Yamamoto Hirobumi, Zhao Ping, Yazaki Kazufumi, Inoue Kenichiro
Laboratory of Medicinal Plant Garden, Nagasaki University School of Pharmaceutical Sciences, Nagasaki, Japan.
Chem Pharm Bull (Tokyo). 2002 Aug;50(8):1086-90. doi: 10.1248/cpb.50.1086.
Cell suspension cultures of Lithospermum erythrorhizon produced a large amount of lithospermic acid B, a caffeic acid tetramer, as well as shikonin derivatives (each ca. 10% of dry wt.) when cultured in shikonin production medium M-9. Various culture factors for increasing the production of lithospermic acid B were investigated. Lithospermic acid B production was inhibited by 2, 4-D or NH4+, whereas it was stimulated by Cu2+. These regulatory patterns were similar to those for the production of shikonin derivatives in these cell cultures, suggestive of close relations and similar metabolic regulation between the production of these compounds. Cultivation under light illumination, however, showed that these metabolisms were independently regulated. In particular, blue light showed a stimulatory effect on lithospermic acid B production, while shikonin production was strongly inhibited, indicative of an effective condition for lithospermic acid B production.
在紫草素生产培养基M-9中培养时,紫草细胞悬浮培养物会产生大量的紫草素B(一种咖啡酸四聚体)以及紫草素衍生物(每种约占干重的10%)。研究了多种用于提高紫草素B产量的培养因素。2,4-D或NH4+会抑制紫草素B的产生,而Cu2+则会刺激其产生。这些调节模式与这些细胞培养物中紫草素衍生物的产生模式相似,表明这些化合物的产生之间存在密切关系和相似的代谢调节。然而,光照培养表明这些代谢是独立调节的。特别是,蓝光对紫草素B的产生有刺激作用,而紫草素的产生则受到强烈抑制,这表明这是紫草素B产生的有效条件。