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Transgenic analysis reveals LeACS-1 as a positive regulator of ethylene-induced shikonin biosynthesis in Lithospermum erythrorhizon hairy roots

机译:转基因分析显示LeACS-1是乙烯诱导紫草毛状根中紫草素生物合成的正调节剂

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The phytohormone ethylene (ET) is a crucial signaling molecule that induces the biosynthesis of shikonin and its derivatives in Lithospermum erythrorhizon shoot cultures. However, the molecular mechanism and the positive regulators involved in this physiological process are largely unknown. In this study, the function of LeACS-1, a key gene encoding the 1-aminocyclopropane-1-carboxylic acid synthase for ET biosynthesis in L. erythrorhizon hairy roots, was characterized by using overexpression and RNA interference (RNAi) strategies. The results showed that overexpression of LeACS-1 significantly increased endogenous ET concentration and shikonin production, consistent with the up-regulated genes involved in ET biosynthesis and transduction, as well as the genes related to shikonin biosynthesis. Conversely, RNAi of LeACS-1 effectively decreased endogenous ET concentration and shikonin production and down-regulated the expression level of above genes. Correlation analysis showed a significant positive linear relationship between ET concentration and shikonin production. All these results suggest that LeACS-1 acts as a positive regulator of ethylene-induced shikonin biosynthesis in L. erythrorhizon hairy roots. Our work not only gives new insights into the understanding of the relationship between ET and shikonin biosynthesis, but also provides an efficient genetic engineering target gene for secondary metabolite production in non-model plant L. erythrorhizon.
机译:植物激素乙烯(ET)是一个关键的信号分子,可诱导紫草紫茎泽兰培养物中紫草素及其衍生物的生物合成。但是,在此生理过程中涉及的分子机制和正调节剂尚不清楚。在这项研究中,LeACS-1(一种编码1-氨基环丙烷-1-羧酸合酶的关键基因)在erythrorhizon毛状根中进行ET生物合成的功能,通过使用过表达和RNA干扰(RNAi)策略进行了表征。结果表明,LeACS-1的过表达显着增加了内源性ET浓度和紫草素的产生,这与参与ET生物合成和转导的基因以及与紫草素生物合成有关的基因上调一致。相反,LeACS-1的RNAi有效降低了内源性ET浓度和紫草素生成,并下调了上述基因的表达水平。相关分析表明,ET浓度和紫草素产量之间存在显着的正线性关系。所有这些结果表明,LeACS-1可以作为乙烯诱导紫苏毛毛根中紫草素生物合成的正调节剂。我们的工作不仅为了解ET和紫草素生物合成之间的关系提供了新见解,而且还为非模式植物紫杉菌中次生代谢产物的生产提供了有效的基因工程靶基因。

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