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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Revisiting the ORCA gene cluster that regulates terpenoid indole alkaloid biosynthesis in Catharanthus roseus
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Revisiting the ORCA gene cluster that regulates terpenoid indole alkaloid biosynthesis in Catharanthus roseus

机译:重新审视调节Terpenoid Indole生物碱生物合成的ORCA基因簇在Catharanthus Roseus中进行调节

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Transcription factor (TF) gene clusters in plants, such as tomato, potato, petunia, tobacco, and almond, have been characterized for their roles in the biosynthesis of diverse array of specialized metabolites. In Catharanthus roseus, three AP2/ERF TFs, ORCA3, ORCA4, and ORCA5, have been shown to be present on the same genomic scaffold, forming a cluster that regulates the biosynthesis of pharmaceutically important terpenoid indole alkaloids (TIAs). Our analysis of the recently updated C. roseus genome sequence revealed that the ORCA cluster comprises two additional AP2/ERFs, the previously characterized ORCA2 and a newly identified member designated as ORCA6. Transcriptomic analysis revealed that the ORCAs are highly expressed in stems, followed by leaves, roots and flowers. Expression of ORCAs was differentially induced in response to methyl-jasmonate and ethylene treatment. In addition, ORCA6 activated the strictosidine synthase (STR) promoter in tobacco cells. Activation of the STR promoter was significantly higher when ORCA2 or ORCA6 was coexpressed with the mitogen-activated protein kinase kinase, CrMPKK1. Furthermore, transient overexpression of ORCA6 in C. roseus flower petals activated TIA pathway gene expression and TIA accumulation. The results described here advance our understanding of regulation of TIA pathway by the ORCA gene cluster and the evolution for plant ERF gene clusters.
机译:植物中的转录因子(TF)基因簇,例如番茄,马铃薯,培养皿,烟草和杏仁,其特征在于它们在各种专业代谢产物的生物合成中的作用。在Catharanthus roseus中,已经显示出三个AP2 / ERF TFS,ORCA3,ORCA4和ORCA5,形成相同的基因组支架上,形成调节药学上重要的Terpenoid Indole生物碱(TiS)的生物合成的簇。我们对最近更新的C.玫瑰花核序列的分析显示ORCA簇包括两个附加的AP2 / ERF,先前表征的ORCA2和指定为ORCA6的新识别的成员。转录组分析表明,逆转录茎在茎中高度表达,其次是叶子,根和花。响应甲基 - 己酸酯和乙烯处理,差异诱导orcas的表达。此外,ORCA6在烟草细胞中激活了粒子合成酶(STR)启动子。当用丝裂剂活化的蛋白激酶激酶CRMPK1将ORCA2或ORCA6共置于CRMPK1时,STR启动子的活化显着升高。此外,C.玫瑰花花瓣中的ORCA6的瞬时过度表达活化TIA途径基因表达和TIA积累。这里描述的结果提前了解ORCA基因簇的调节TIA途径和植物ERF基因簇的演变。

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