首页> 外文期刊>Biosciences Biotechnology Research Asia >Production of panduratin A, cardamomin and sitosterol using cell cultures of fingerroot ( Boesenbergia pandurata (Roxb.) Schlechter).
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Production of panduratin A, cardamomin and sitosterol using cell cultures of fingerroot ( Boesenbergia pandurata (Roxb.) Schlechter).

机译:使用指根的细胞培养物生产泛达汀A,豆蔻素和谷固醇(Boesenbergia pandurata(Roxb。)Schlechter)。

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Fingerroot ( Boesenbergia pandurata (Roxb.) Schlechter) is an important Southeast Asia especially Indonesian's plant that has many pharmacological activities. This plant contains several secondary metabolites such as flavonoids and their prenylated derivates like panduratin A that can be produced trough tissue culture techniques. This study aimed to produce secondary metabolites mainly flavonoids in the fingerroot cell cultures and explain their biosynthetic relationship. Bud's meristem of fingerroot were initiated to forming callus and shoot in appropriate medium and also induced to produce rhizomes in in vitro condition. Panduratin A content was determined using HPLC. The dominant secondary metabolites were isolated and characterized using, chemical reagents and spectroscopic methods. Panduratin A can be produced through callus and rhizomes formation of fingerroot. Other two secondary metabolites have been indentified as phytosterol and cardamonin with the content 285.858.36% and 316.350.82% respectively which were higher than the original plant. Panduratin A, phytosterol and cardamonin which are supposed to have pharmacological activities have been produced using cell culture of fingerroot Boesenbergia pandurata (Roxb.) Schlechter with higher level compared to the original plants.
机译:Fingerroot(Boesenbergia pandurata(Roxb。)Schlechter)是重要的东南亚地区,尤其是印度尼西亚的植物,具有许多药理活性。该植物含有几种次生代谢产物,例如黄酮类化合物和它们的异戊二烯化衍生物(如潘杜拉汀A),可以通过组织培养技术生产。这项研究旨在在指根细胞培养物中产生主要为类黄酮的次生代谢产物,并解释其生物合成关系。芽的分生组织在适当的培养基中开始形成愈伤组织并发芽,并在体外条件下诱导产生根茎。使用HPLC测定泛素A的含量。主要的次要代谢产物是使用化学试剂和光谱法进行分离和表征的。 Panduratin A可通过指根的愈伤组织和根状茎形成而产生。已鉴定出另外两种次生代谢产物为植物甾醇和豆蔻素,含量分别为285.858.36%和316.350.82%,高于原始植物。潘多丁A,植物甾醇和豆蔻素被认为具有药理活性,这是通过使用指根Boesenbergia pandurata(Roxb。)Schlechter的细胞培养法生产的,比原始植物的水平更高。

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