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对感染响应中防御相关重编程的代谢组学分析揭示了苯丙烷类和类黄酮途径的功能性代谢网络。

Metabolomic Analysis of Defense-Related Reprogramming in in Response to Infection Reveals a Functional Metabolic Web of Phenylpropanoid and Flavonoid Pathways.

作者信息

Tugizimana Fidele, Djami-Tchatchou Arnaud T, Steenkamp Paul A, Piater Lizelle A, Dubery Ian A

机构信息

Department of Biochemistry, Research Centre for Plant Metabolomics, University of Johannesburg, Johannesburg, South Africa.

出版信息

Front Plant Sci. 2019 Jan 4;9:1840. doi: 10.3389/fpls.2018.01840. eCollection 2018.

Abstract

The metabolome of a biological system provides a functional readout of the cellular state, thus serving as direct signatures of biochemical events that define the dynamic equilibrium of metabolism and the correlated phenotype. Hence, to elucidate biochemical processes involved in sorghum responses to fungal infection, a liquid chromatography-mass spectrometry-based untargeted metabolomic study was designed. Metabolic alterations of three sorghum cultivars responding to , were investigated. At the 4-leaf growth stage, the plants were inoculated with fungal spore suspensions and the infection monitored over time: 0, 3, 5, 7, and 9 days post inoculation. Non-infected plants were used as negative controls. The metabolite composition of aqueous-methanol extracts were analyzed on an ultra-high performance liquid chromatography system coupled to high-definition mass spectrometry. The acquired multidimensional data were processed to create data matrices for multivariate statistical analysis and chemometric modeling. The computed chemometric models indicated time- and cultivar-related metabolic changes that reflect sorghum responses to the fungal infection. Metabolic pathway and correlation-based network analyses revealed that this multi-component defense response is characterized by a functional metabolic web, containing defense-related molecular cues to counterattack the pathogen invasion. Components of this network are metabolites from a range of interconnected metabolic pathways with the phenylpropanoid and flavonoid pathways being the central hub of the web. One of the key features of this altered metabolism was the accumulation of an array of phenolic compounds, particularly biosynthesis of the antifungal 3-deoxyanthocynidin phytoalexins, apigeninidin, luteolinidin, and related conjugates. The metabolic results were complemented by qRT-PCR gene expression analyses that showed upregulation of defense-related marker genes. Unraveling key characteristics of the biochemical mechanism underlying sorghum- interactions, provided valuable insights with potential applications in breeding crop plants with enhanced disease resistance. Furthermore, the study contributes to ongoing efforts toward a comprehensive understanding of the regulation and reprogramming of plant metabolism under biotic stress.

摘要

生物系统的代谢组提供了细胞状态的功能读数,因此可作为定义代谢动态平衡和相关表型的生化事件的直接特征。因此,为了阐明高粱对真菌感染的反应所涉及的生化过程,设计了一项基于液相色谱 - 质谱的非靶向代谢组学研究。研究了三个高粱品种对[此处原文缺失具体感染物]的代谢变化。在四叶生长阶段,用真菌孢子悬浮液接种植物,并随时间监测感染情况:接种后0、3、5、7和9天。未感染的植物用作阴性对照。在与高清质谱联用的超高效液相色谱系统上分析水 - 甲醇提取物的代谢物组成。对获取的多维数据进行处理,以创建用于多元统计分析和化学计量学建模的数据矩阵。计算得到的化学计量学模型表明了与时间和品种相关的代谢变化,这些变化反映了高粱对真菌感染的反应。基于代谢途径和相关性的网络分析表明,这种多组分防御反应的特征是一个功能性代谢网络,其中包含防御相关的分子线索以反击病原体入侵。该网络的组成部分是来自一系列相互连接的代谢途径的代谢物,苯丙烷类和黄酮类途径是该网络的中心枢纽。这种代谢改变的关键特征之一是一系列酚类化合物的积累,特别是抗真菌的3 - 脱氧花青素植保素、芹菜素idin、木犀草素idin及相关共轭物的生物合成。代谢结果通过qRT - PCR基因表达分析得到补充,该分析表明防御相关标记基因上调。揭示高粱 - [此处原文缺失具体相互作用对象]相互作用背后生化机制的关键特征,为培育具有增强抗病性的作物提供了有潜在应用价值的宝贵见解。此外,该研究有助于持续努力全面了解生物胁迫下植物代谢的调控和重编程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/310c/6328496/a205a5eb9b3d/fpls-09-01840-g0001.jpg

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