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首页> 外文期刊>Biotechnology Progress >Interaction Between Abscisic Acid and Nitric Oxide in PB90-Induced Catharanthine Biosynthesis of Catharanthus roseus Cell Suspension Cultures
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Interaction Between Abscisic Acid and Nitric Oxide in PB90-Induced Catharanthine Biosynthesis of Catharanthus roseus Cell Suspension Cultures

机译:PB90诱导的长春花玫瑰悬浮细胞悬浮培养中合成的脱落酸和一氧化氮之间的相互作用

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摘要

Elicitations are considered to be an important strategy to improve production of secondary metabolites of plant cell cultures. However, mechanisms responsible for the elicitor-induced production of secondary metabolites of plant cells have not yet been fully elucidated. Here, we report that treatment of Catharanthus roseus cell suspension cultures with PB90, a protein elicitor from Phytophthora boehmeriae, induced rapid increases of abscisic acid (ABA) and nitric oxide (NO), subsequently followed by the enhancement of catharanthine production and up-regulation of Str and Tdc, two important genes in catharanthine biosynthesis. PB90-induced catharanthine production and the gene expression were suppressed by the ABA inhibitor and NO scavenger respectively, showing that ABA and NO are essential for the elicitor-induced catharanthine biosynthesis. The relationship between ABA and NO in mediating catharanthine biosynthesis was further investigated. Treatment of the cells with ABA triggered NO accumulation and induced catharanthine production and up-regulation of Str and Tdc. ABA-induced catharanthine production and gene expressions were suppressed by the NO scavenger. Conversely, exogenous application of NO did not stimulate ABA generation and treatment with ABA inhibitor did not suppress NO-induced catharanthine production and gene expressions. Together, the results showed that both NO and ABA were involved in PB90-induced catharanthine biosynthesis of C. roseus cells. Furthermore, our data demonstrated that ABA acted upstream of NO in the signaling cascade leading to PB90-induced catharanthine biosynthesis of C. roseus cells.
机译:激发被认为是提高植物细胞培养物中次级代谢产物产生的重要策略。然而,尚未完全阐明引起诱导物诱导植物细胞次级代谢产物产生的机制。在这里,我们报告说用PB90(一种来自疫霉疫霉的蛋白引发剂)治疗长春花玫瑰细胞悬浮培养物,引起脱落酸(ABA)和一氧化氮(NO)的快速增加,随后增强了长黄嘌呤的产生和上调和Tdc的合成,这是catheranthine生物合成中的两个重要基因。 PB90诱导的长春氨酸的产生和基因表达分别被ABA抑制剂和NO清除剂抑制,表明ABA和NO对于激发子诱导的长春氨酸生物合成至关重要。进一步研究了ABA和NO在介导cathenthine生物合成中的关系。用ABA处理细胞会触发NO积累,并诱导胱氨酸的产生以及Str和Tdc的上调。 NO清除剂抑制了ABA诱导的catharanthine的产生和基因表达。相反,外源施用NO不会刺激ABA的产生,而用ABA抑制剂处理并不能抑制NO诱导的catharanthine的产生和基因表达。在一起,结果表明,NO和ABA都参与了PB90诱导的玫瑰玫瑰念珠菌生物合成。此外,我们的数据表明,ABA在信号级联反应中的NO上游起作用,从而导致PB90诱导的玫瑰玫瑰梭菌生物合成。

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