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Establishment and characterization of a Satureja khuzistanica Jamzad (Lamiaceae) cell suspension culture: a new in vitro source of rosmarinic acid

机译:ature香(悬铃科)细胞悬浮培养物的建立和表征:迷迭香酸的体外新来源

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摘要

An in vitro approach to the production of rosmarinic acid (RA), a medicinally important caffeic acid ester, in a cell suspension culture (CSC) of Satureja khuzistanica Jamzad (Lamiaceae) has been investigated for the first time. The CSC was established from friable calli derived from shoot tip explants in Gamborg’s B5 liquid medium supplemented with 30 g/L sucrose, 20 mg/L l-glutamine, 200 mg/L casein hydrolysate, 5 mg/L benzyladenine (BA) and 1 mg/L indole-3-butyric acid (IBA). The effect of nitrogen source (KNO3 and (NH4)2SO4) and their different concentrations on the fresh and dry weight (g/L), as well as RA content (mg/g dry weight) were measured. CSC growth measurements indicated a maximum specific cell growth rate of 1.5/day, a doubling time of 7.6 days and a high percentage of cell viability (96.4 %) throughout the growth cycle. Maximum cell fresh weight (353.5 g/L), dry weight (19.7 g/L) and RA production (180.0 mg/g) were attained at day 21 of culture. Cell growth and RA content were affected by nitrogen deficiency. Media containing 8.3 mM of total nitrogen (¼ of B5 standard medium) led to a minimum cell fresh weight (243.0 g/L), dry weight (17.4 g/L) and RA content (38.0 mg/g) after 21 days. The established CSC provided useful material for further optimization experiments aimed at a large-scale production of RA.
机译:首次研究了在Satureja khuzistanica Jamzad(唇形科)的细胞悬浮培养(CSC)中生产药用重要的咖啡酸酯迷迭香酸(RA)的体外方法。 CSC由甘布氏B5液体培养基中芽尖外植体衍生的脆性愈伤组织建立,该培养基中补充了30 g / L蔗糖,20 mg / L l-谷氨酰胺,200 mg / L酪蛋白水解产物,5 mg / L苄基腺嘌呤(BA)和1 mg / L吲哚-3-丁酸(IBA)。测量了氮源(KNO3和(NH4)2SO4)及其不同浓度对鲜重和干重(g / L)以及RA含量(mg / g干重)的影响。 CSC生长测量表明最大比细胞生长率为1.5 /天,倍增时间为7.6天,并且在整个生长周期中细胞存活率很高(96.4%)。在培养的第21天达到最大细胞新鲜重量(353.5 g / L),干重(19.7 g / L)和RA产量(180.0 mg / g)。细胞生长和RA含量受氮缺乏的影响。含有8.3mM总氮(1/4 B5标准培养基)的培养基在21天后导致最小细胞新鲜重量(243.0g / L),干重(17.4g / L)和RA含量(38.0mg / g)。建立的CSC为旨在大规模生产RA的进一步优化实验提供了有用的材料。

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