首页> 外文OA文献 >The Transcription Factor CrWRKY1 Positively Regulates the Terpenoid Indole Alkaloid Biosynthesis in Catharanthus roseus1[W][OA]
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The Transcription Factor CrWRKY1 Positively Regulates the Terpenoid Indole Alkaloid Biosynthesis in Catharanthus roseus1[W][OA]

机译:转录因子CrWRKY1正调控长春花1的萜类吲哚生物碱的生物合成[W] [OA]

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摘要

Catharanthus roseus produces a large array of terpenoid indole alkaloids (TIAs) that are an important source of natural or semisynthetic anticancer drugs. The biosynthesis of TIAs is tissue specific and induced by certain phytohormones and fungal elicitors, indicating the involvement of a complex transcriptional control network. However, the transcriptional regulation of the TIA pathway is poorly understood. Here, we describe a C. roseus WRKY transcription factor, CrWRKY1, that is preferentially expressed in roots and induced by the phytohormones jasmonate, gibberellic acid, and ethylene. The overexpression of CrWRKY1 in C. roseus hairy roots up-regulated several key TIA pathway genes, especially Tryptophan Decarboxylase (TDC), as well as the transcriptional repressors ZCT1 (for zinc-finger C. roseus transcription factor 1), ZCT2, and ZCT3. However, CrWRKY1 overexpression repressed the transcriptional activators ORCA2, ORCA3, and CrMYC2. Overexpression of a dominant-repressive form of CrWRKY1, created by fusing the SRDX repressor domain to CrWRKY1, resulted in the down-regulation of TDC and ZCTs but the up-regulation of ORCA3 and CrMYC2. CrWRKY1 bound to the W box elements of the TDC promoter in electrophoretic mobility shift, yeast one-hybrid, and C. roseus protoplast assays. Up-regulation of TDC increased TDC activity, tryptamine concentration, and resistance to 4-methyl tryptophan inhibition of CrWRKY1 hairy roots. Compared with control roots, CrWRKY1 hairy roots accumulated up to 3-fold higher levels of serpentine. The preferential expression of CrWRKY1 in roots and its interaction with transcription factors including ORCA3, CrMYC2, and ZCTs may play a key role in determining the root-specific accumulation of serpentine in C. roseus plants.
机译:长春花产生大量的萜类吲哚生物碱(TIA),这是天然或半合成抗癌药物的重要来源。 TIA的生物合成是组织特异性的,并由某些植物激素和真菌激发子诱导,表明涉及复杂的转录控制网络。但是,对TIA途径的转录调控了解甚少。在这里,我们描述了一个C. roseus WRKY转录因子CrWRKY1,该因子优先在根中表达,并由茉莉酸植物激素,赤霉素和乙烯诱导。 C.roseus毛状根中CrWRKY1的过表达上调了几个关键的TIA通路基因,尤其是色氨酸脱羧酶(TDC),以及转录阻遏物ZCT1(用于锌指C.roseus转录因子1),ZCT2和ZCT3。 。但是,CrWRKY1过表达抑制转录激活因子ORCA2,ORCA3和CrMYC2。通过将SRDX阻遏域与CrWRKY1融合产生的CrWRKY1显性抑制形式的过表达导致TDC和ZCT的下调,而ORCA3和CrMYC2的上调。 CrWRKY1在电泳迁移率迁移,酵母一杂交和玫瑰色梭菌原生质体测定中与TDC启动子的W盒元件结合。 TDC的上调增加了TDC活性,色胺浓度和对CrWRKY1毛状根对4-甲基色氨酸的抑制作用。与对照根相比,CrWRKY1毛状根累积的蛇纹石含量高出3倍。 CrWRKY1在根中的优先表达及其与转录因子(包括ORCA3,CrMYC2和ZCTs)的相互作用可能在确定玫瑰假丝酵母植物中蛇纹石的根特异性积累中起关键作用。

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