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首页> 外文期刊>Natural product communications >Artemisinic Acid Serves as a Novel ORCA3 Inducer to Enhance Biosynthesis of Terpenoid Indole Alkaloids in Catharanthus roseus Cambial Meristematic Cells
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Artemisinic Acid Serves as a Novel ORCA3 Inducer to Enhance Biosynthesis of Terpenoid Indole Alkaloids in Catharanthus roseus Cambial Meristematic Cells

机译:青蒿素用作新的ORCA3诱导剂,以增强Terpenoid Indole生物碱在Catharanthus Roseus Cambial族聚集细胞中的生物合成

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摘要

To investigate the effect of artemisinic acid (AA) on improving the production of terpenoid indole alkaloids (TIAs) of Catharanthus roseus cambial meristematic cells (CMCs), feeding AA to C. roseus CMCs caused 2.35-fold and 2.51-fold increases in the production of vindoline and catharanthine, respectively, compared with those of the untreated CMCs. qRT-PCR experiments showed that AA resulted in a 1.36-8.52 fold increase in the transcript levels of several related genes, including octadecanoid-derivative responsive Catharanthus AP2-domain protein 3 (ORCA3), tryptophan decarboxylase (TDC), strictosidine synthase (STR) and desacetoxyvindoline 4-hydroxylase (D4P1). However, no effect was observed on the concentration of either jasmonic acid (JA), or the octadecanoid-pathway inhibitors block TIA accumulation caused by AA. The results indicated that AA might serve as a novel ORCA3 inducer to manipulate biosynthesis of TIAs in C. roseus CMCs via an unknown mechanism.
机译:探讨青蒿酸(AA)对改善Catharanthus跳跃山羊山羊共聚合物(CMC)的萜烯吲哚生物碱(TiS)的产生的影响,喂养AA至C.玫瑰花CMC造成的2.35倍和2.51倍增加的生产 与未经治疗的CMCs的CMC相比,求脊柱和丘安湿度。 QRT-PCR实验表明,若干相关基因的转录物水平导致AA增加1.36-8.52倍,包括十八烷衍生响应Quativehus AP2-结构域蛋白3(ORCA3),色氨酸脱羧酶(TDC),术 和Desacetoxyvindoline 4-羟化酶(D4P1)。 然而,在茉莉酸(JA)的浓度上没有观察到效果,或十八烷酸途径抑制剂阻断由AA引起的TIA积累。 结果表明,AA可以作为一种新的ORCA3诱导剂,以通过未知机制操纵C.罗斯CMC的钛合体的生物合成。

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