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Overexpression of Panax ginseng sesquiterpene synthase gene confers tolerance against Pseudomonas syringae pv. tomato in Arabidopsis thaliana

机译:人参倍半萜烯合酶基因的过表达赋予对丁香假单胞菌PV的耐受性。拟南芥中的番茄

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摘要

Sesquiterpenes are an abundant group belonging to the terpenoid family, with a C15 structure comprise of three isoprene units. Many sesquiterpenes are volatile compounds and it act as chemical messenger in plant signalling, particularly in the defense mechanism against biotic and abiotic stresses. Panax ginseng Meyer is important medicinal herbs with various reported pharmacological efficacies in which its triterpenoid saponins, called ginsenosides, were mostly studied. However, there have been few studies on volatile sesquiterpenes compounds regulation on P. ginseng. As slow-growing perennial plant, P. ginseng received many kind of stresses during its cultivation. The pathogen attack is one of the most devastated perturbation for ginseng yield. Thus, we aimed to analyze P. ginseng STS gene (PgSTS) expressions in ginseng organs as well as mono-, sesquiterpenes contents from ginseng seedlings treated with elicitors. qRT-PCR and GC-MS analysis showed that two elicitors- salicylic acid (SA) and methyl jasmonate (MeJA) triggered PgSTS expression at different time points and significantly induced mono-, sesquiterpene yield. Overexpression of PgSTS in Arabidopsis also induced high terpene content and conferred tolerance against Pseudomonas syringae pv. tomato infection. These results suggested that PgSTS transcripts are involved in terpenoid biosynthesis in response to environmental stress mediated by MeJA and SA elicitors; thus, generate tolerance against pathogen attack.
机译:倍半萜是属于萜类的丰富基团,其C15结构由三个异戊二烯单元组成。许多倍半萜是挥发性化合物,在植物信号传递中,特别是在抵御生物和非生物胁迫的防御机制中,它充当化学信使。人参是一种具有重要药理作用的重要草药,其中主要研究了三萜皂苷(称为人参皂甙)。然而,关于人参的挥发性倍半萜烯化合物调控的研究很少。作为人参生长缓慢的多年生植物,人参在栽培过程中受到多种压力。病原体侵袭是人参产量遭受最严重破坏的扰动之一。因此,我们旨在分析人参器官中的人参STS基因(PgSTS)表达以及经激发子处理的人参幼苗中的单,倍半萜含量。 qRT-PCR和GC-MS分析表明,两种引发剂-水杨酸(SA)和茉莉酸甲酯(MeJA)在不同时间点触发PgSTS表达,并显着诱导单倍半萜烯产量。 PgSTS在拟南芥中的过表达也诱导了高萜含量并赋予了对丁香假单胞菌pv的耐受性。番茄感染。这些结果表明,PgSTS转录本参与萜类生物合成,以响应MeJA和SA激发子介导的环境胁迫。因此,产生对病原体攻击的耐受性。

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