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首页> 外文期刊>South African Journal of Botany >Elicitor-mediated enhanced accumulation of ursolic acid and eugenol in hairy root cultures of Ocimum tenuiflorum L. is age, dose, and duration dependent
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Elicitor-mediated enhanced accumulation of ursolic acid and eugenol in hairy root cultures of Ocimum tenuiflorum L. is age, dose, and duration dependent

机译:Elicitor介导的熊醇酸和丁香酚在毛状根培养物中的致卤素培养物的增强累积为年龄,剂量和持续时间

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Ursolic acid (pentacyclic triterpene acid) and eugenol (phenolic compound), the major secondary metabolites of Ocimum tenuiflorumL., exhibit many pharmacological activities. Due to lowquantities of thesemetabolites in the plant, it was imperative to apply biotechnological approaches for enhancing accumulation of these compounds. Effects of three elicitors namely yeast extract, methyl jasmonate, and salicylic acid were studied on the hairy root cultures induced by infecting leaves of O. tenuiflorum with Agrobacteriumrhizogenes strain. The transgenic nature of hairy roots was validated by PCR of rolB gene. The yield of ursolic acid and eugenol responded to the age of the culture, the concentration of the elicitor and the incubation time. The 17-day-old hairy root cultureswhen treated with yeast extract (50 mg/L) produced the highest amount of ursolic acid of 1.56 mg/g dry weight (5.6-fold higher than control culture) and eugenol content of 0.41 mg/g dry weight (similar to 6.0-fold higher than the control) after 8 days of exposure. Methyl jasmonate at 60 mg/L concentration also enhanced the accumulation of ursolic acid up to 1.43 mg/g dry weight (5.0-fold higher than the control) and eugenol up to 0.1 mg/g dry weight (1.55-fold higher than the control) after 8 days of elicitor treatment. Increased elicitor concentration and extended exposure time as well as age of the culture resulted in reduced accumulation of ursolic acid and eugenol in hairy root cultures. Our results demonstrate the importance of age of the culture, different exposure time, and concentration of elicitors in the hairy root culture of O. tenuiflorum for increased production of pharmaceutically important metabolites. (C) 2019 SAAB. Published by Elsevier B.V. All rights reserved.
机译:熊磷酸(五环三萜酸)和丁香酚(酚类化合物),OCimum Tenuifloruml的主要次生代谢物。,表现出许多药理学活动。由于植物中替代的萘岩,因此施加生物技术方法以增强这些化合物的积累。三种Elicitors的影响即酵母提取物,茉莉甲酸甲酯和水杨酸研究了通过农杆菌菌株感染O. Tenuiflorum的叶片诱导的毛发根培养物。通过ROLB基因的PCR验证了毛状根的转基因性质。熊酸和丁香酚的产量应对培养的年龄,引导者的浓度和孵育时间。用酵母提取物(50mg / L)处理的17天旧的毛茸茸的根培养物产生的熊酸的最高量为1.56mg / g干重(比对照培养的5.6倍)和丁烯醇含量为0.41 mg / g在暴露8天后,干重(类似于对照的6.0倍)。 60 mg / L浓度的甲基己酸酯也增强了熊糖酸的积聚,其高达1.43mg / g干重(比对照5.0倍),丁烯醇高达0.1mg / g干重(比对照高1.55倍)在Elicitor治疗8天后。提高Elicitor浓度和延长的暴露时间以及培养的年龄导致毛状根培养物中熊酸和丁香酚的积累减少。我们的结果表明,O. Tenuiflorum的毛发根培养中的培养,不同的暴露时间和菌的浓度的重要性,用于增加药学上重要的代谢物的产生。 (c)2019 Saab。 elsevier b.v出版。保留所有权利。

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