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首页> 外文期刊>Phytochemistry >Metabolomic analysis of isonitrosoacetophenone-induced perturbations in phenolic metabolism of Nicotiana tabacum cells
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Metabolomic analysis of isonitrosoacetophenone-induced perturbations in phenolic metabolism of Nicotiana tabacum cells

机译:异硝基苯乙酮诱导的烟草烟草酚代谢紊乱的代谢组学分析

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摘要

Plants have developed biochemical and molecular responses to adapt to different stress environments. One of the characteristics of the multi-component defence response is the production of defence-related metabolites. Plant defences can be triggered by various stimuli, including synthetic or naturally occurring molecules, especially those derived from pathogens. In the current study, Nicotiana tabacum cell suspensions were treated with isonitrosoacetophenone (INAP), a subcomponent of a plant-derived stress metabolite with anti-fungal and anti-oxidant properties, in order to investigate the effect thereof on cellular metabolism. Subsequent metabolomic-based analyses were employed to evaluate changes in the metabolome. UPLC-MS in conjunction with multivariate data analyses was found to be an appropriate approach to study the effect of chemical inducers like INAP on plant metabolism in this model system. Principal component analysis (PCA) indicated that INAP is capable of inducing time-dependent metabolic perturbations in the cultured cells. Orthogonal projection to latent structures discriminant analysis (OPLS-DA) revealed metabolites of which the levels are affected by INAP, and eight of these were tentatively annotated from the mass spectral data and online databases. These metabolites are known in the context of plant stress- and defence responses and include benzoic- or cinnamic acid derivatives that are either glycosylated or quinilated as well as flavonoid derivatives. The results indicate that INAP affects the shikimate-, phenylpropanoid- and flavonoid pathways, the products of which may subsequently lead to an antioxidant environment in vivo
机译:植物已发展出生化和分子响应以适应不同的胁迫环境。多组分防御反应的特征之一是与国防有关的代谢产物的产生。植物防御可以通过各种刺激来触发,包括合成或天然存在的分子,尤其是源自病原体的分子。在当前的研究中,烟草烟草悬浮液用异亚硝基苯乙酮(INAP)处理,这是植物衍生的具有抗真菌和抗氧化特性的胁迫代谢产物的一个子成分,以研究其对细胞代谢的影响。随后的基于代谢组学的分析用于评估代谢组的变化。在该模型系统中,UPLC-MS与多变量数据分析相结合是研究化学诱导剂(如INAP)对植物代谢的影响的合适方法。主成分分析(PCA)表明,INAP能够在培养的细胞中诱导时间依赖性代谢扰动。对潜在结构判别分析(OPLS-DA)的正交投影揭示了其代谢产物水平受INAP影响的代谢物,其中八种是从质谱数据和在线数据库中临时标注出来的。这些代谢物在植物胁迫和防御反应的背景下是已知的,包括糖基化或喹啉化的苯甲酸或肉桂酸衍生物以及类黄酮衍生物。结果表明,INAP影响the草酸酯,苯丙烷和类黄酮的途径,其产物可能随后导致体内抗氧化环境

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