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机构地区:[1]同济大学生命科学与技术学院,上海200092 [2]浙江师范大学生命与环境科学学院,金华321004
出 处:《分子细胞生物学报》2007年第1期49-61,共13页Journal of Molecular Cell Biology
基 金:国家自然科学基金资助(30470863)。
摘 要:贯叶连翘(Hypericum perforatum L.)是一种传统草药,在欧洲被广泛用于治疗抑郁症。其重要的活性成分,金丝桃素类物质储存在茎、叶和花瓣的分泌细胞团中。本文应用组织化学及电子显微镜技术,研究体外培养的贯叶连翘叶肉细胞脱分化产生愈伤组织以及细胞发育过程中金丝桃素类物质的积累、运输的情况,进一步探讨细胞的生长发育与次生代谢产物的关系。发现金丝桃素类物质产生于愈伤组织培养后期,在愈伤组织表面所形成的分泌细胞群中,最初在细胞质中形成,之后运输至液泡中积累,内质网参与了金丝桃素类物质的合成过程。这些结果为利用组织培养技术提高金丝桃素类物质含量提供了理论基础和依据。Hypericum perforatum L. is a kind of traditional herbal medicine that has been used as an anti-depression medicine in Europe for centuries. One of its biological active compound,hypericins,is stored in the special secondary structure,black nodules,which located in the stems,leaves and flowers. Most researches focus on the development of the black nodules in vivo and how to culture the plant to produce more hypericins. We studied the process of de-differentiation from explants to callus and the pathway of hypericins biosynthesis in callus and cells of H. perforatum L. which reflected the relationship between the cell development and secondary metabolites accumulation. The morphogenesis of cells development and hypericins accumulation were studied by electron microscopy and histological technologies. Hypericins began to accumulate in a bunch of secondary cells located on the surface of the callus in late development period. Hypericins initially produced in the cytoplasm and were transported into the vacuole and then accumulated. E.R. took apart in the process of hypericins pro A duction. Theses results supplied the gap of hypericins production and accumulation-in vitro and gave some useful information regarding mass-production hypericins by tissue and cell culture technology.
关 键 词:贯叶连翘 金丝桃素 分泌细胞群 脱分化 超微结构
分 类 号:S567.19[农业科学—中草药栽培]
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