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丹参酮在丹参中的生物合成及在植物组织培养中的生产。

Tanshinone biosynthesis in Salvia miltiorrhiza and production in plant tissue cultures.

机构信息

Soochow University, Suzhou, China.

出版信息

Appl Microbiol Biotechnol. 2010 Sep;88(2):437-49. doi: 10.1007/s00253-010-2797-7. Epub 2010 Aug 7.

Abstract

Salvia miltiorrhiza Bunge (Lamiaceae) root, generally called Danshen, is an important herb in Chinese medicine widely used for treatment of cardiovascular diseases. Diterpenoid tanshinons are major bioactive constituents of Danshen with notable pharmacological activities and the potential as new drug candidates against some important human diseases. The importance of Danshen for traditional and modern medicines has motivated the research interest over two decades in the biosynthesis and biotechnological production of tanshinones. Although diterpenes in plants are presumably derived from the non-mevalonate (MVA) pathway, tanshinone biosynthesis in S. miltiorrhiza may also depend on the MVA pathway based on some key enzymes and genes detected in the early steps of these pathways. Plant tissue cultures are the major biotechnological processes for rapid production of tanshinones and other bioactive compounds in the herb. Various in vitro cultures of S. miltiorrhiza have been established, including cell suspension, adventitious root, and hairy root cultures, which can accumulate the major tanshinones as in the plant roots. Tanshinone production in cell and hairy root cultures has been dramatically enhanced with various strategies, including medium optimization, elicitor stimulation, and nutrient feeding operations. This review will summarize the above developments and also provide our views on future trends.

摘要

丹参,唇形科鼠尾草属植物,一般称为丹参,是一种在中国医学中广泛用于治疗心血管疾病的重要草药。二萜丹参酮是丹参的主要生物活性成分,具有显著的药理活性,并有潜力成为治疗一些重要人类疾病的新药候选物。丹参在传统医学和现代医学中的重要性促使人们在过去二十多年中对丹参酮的生物合成和生物技术生产产生了研究兴趣。尽管植物中的二萜类化合物推测来源于非甲羟戊酸(MVA)途径,但基于这些途径早期检测到的一些关键酶和基因,丹参酮的生物合成也可能依赖于 MVA 途径。植物组织培养是快速生产丹参及其他草药中生物活性化合物的主要生物技术过程。已经建立了各种丹参的体外培养,包括细胞悬浮液、不定根和毛状根培养,这些培养可以积累与植物根中相同的主要丹参酮。通过优化培养基、添加诱导子和营养物喂养等各种策略,细胞和毛状根培养中的丹参酮产量得到了显著提高。本综述将总结上述进展,并对未来的发展趋势提出看法。

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