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An integrated RNAseq-1H NMR metabolomics approach to understand soybean primary metabolism regulation in response to Rhizoctonia foliar blight disease

机译:集成的R​​NAseq-1H NMR代谢组学方法可了解大豆对根瘤菌叶枯病的主要代谢调控

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摘要

Background Rhizoctonia solani AG1-IA is a devastating phytopathogen causing Rhizoctonia foliar blight (RFB) of soybean worldwide with yield losses reaching 60%. Plant defense mechanisms are complex and information from different metabolic pathways is required to thoroughly understand plant defense regulation and function. Combining information from different “omics” levels such as transcriptomics, metabolomics, and proteomics is required to gain insights into plant metabolism and its regulation. As such, we studied fluctuations in soybean metabolism in response to R. solani infection at early and late disease stages using an integrated transcriptomics-metabolomics approach, focusing on the regulation of soybean primary metabolism and oxidative stress tolerance.
机译:背景茄枯萎病菌AG1-IA是一种破坏性植物病原体,在全球范围内引起大豆枯萎病(RFB),单产损失达60%。植物防御机制是复杂的,并且需要来自不同代谢途径的信息来全面了解植物防御调控和功能。需要结合来自不同“组学”水平的信息,例如转录组学,代谢组学和蛋白质组学,以深入了解植物代谢及其调控。因此,我们使用综合的转录组学-代谢组学方法研究了在疾病早期和晚期对大豆红斑病菌响应的大豆代谢波动,重点是调节大豆的初级代谢和耐氧化性。

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