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Molecular analysis of menadione?¢????induced resistance against biotic stress in Arabidopsis

机译:甲萘醌诱导拟南芥对生物胁迫的抗性的分子分析

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Menadione sodium bisulphite (MSB) is a water?¢????soluble derivative of vitamin K3, or menadione, and has been previously demonstrated to function as a plant defence activator against several pathogens in several plant species. However, there are no reports of the role of this vitamin in the induction of resistance in the plant model Arabidopsis thaliana . In the current study, we demonstrate that MSB induces resistance by priming in Arabidopsis against the virulent strain Pseudomonas syringae pv. tomato DC3000 ( Pto ) without inducing necrosis or visible damage. Changes in gene expression in response to 0.2?¢????m m MSB were analysed in Arabidopsis at 3, 6 and 24?¢????h post?¢????treatment using microarray technology. In general, the treatment with MSB does not correlate with other publicly available data, thus MSB produces a unique molecular footprint. We observed 158 differentially regulated genes among all the possible trends. More up?¢????regulated genes are included in categories such as ?¢????response to stress?¢???? than the background, and the behaviour of these genes in different treatments confirms their role in response to biotic and abiotic stress. In addition, there is an over?¢????representation of the G?¢????box in their promoters. Some interesting functions are represented among the individual up?¢????regulated genes, such as glutathione S?¢????transferases, transcription factors (including putative regulators of the G?¢????box) and cytochrome P450s. This work provides a wide insight into the molecular cues underlying the effect of MSB as a plant resistance inducer.
机译:甲萘醌亚硫酸氢钠(MSB)是维生素K3的水溶性衍生物,或甲萘醌,先前已被证明可以抵抗几种植物中的几种病原体。然而,在植物模型拟南芥中,没有该维生素在诱导抗性中的作用的报道。在当前的研究中,我们证明了MSB通过在拟南芥中引发针对强毒株丁香假单胞菌pv的诱导而产生抗性。番茄DC3000(Pto)不会引起坏死或可见损伤。使用微阵列技术,在拟南芥处理后3、6和24小时,在拟南芥中分析响应于0.2μmm MSB的基因表达的变化。通常,用MSB进行的治疗与其他公开数据不相关,因此MSB产生了独特的分子足迹。我们观察到了所有可能趋势中的158个差异调节基因。更多上调的基因包括在诸如“对压力的反应”等类别中。这些基因在不同处理中的行为证实了它们在应对生物和非生物胁迫中的作用。另外,在其启动子中有一个G + +框的过量表示。在个别上调的基因中表现出一些有趣的功能,例如谷胱甘肽Sα转移酶,转录因子(包括假定的Gβ盒调节子)和细胞色素P450。 。这项工作提供了对潜在分子线索作为植物抗性诱导剂的MSB作用的分子线索的广泛见解。

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