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iTRAQ Proteomic Analysis Reveals That Metabolic Pathways Involving Energy Metabolism Are Affected by Tea Tree Oil in Botrytis cinerea

机译:iTRAQ蛋白质组学分析表明灰葡萄孢中茶树油会影响涉及能量代谢的代谢途径。

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摘要

Tea tree oil (TTO) is a volatile essential oil obtained from the leaves of the Australian tree Melaleuca alternifolia by vapor distillation. Previously, we demonstrated that TTO has a strong inhibitory effect on Botrytis cinerea. This study investigates the underlying antifungal mechanisms at the molecular level. A proteomics approach using isobaric tags for relative and absolute quantification (iTRAQ) was adopted to investigate the effects of TTO on B. cinerea. A total of 718 differentially expression proteins (DEPs) were identified in TTO-treated samples, 17 were markedly up-regulated and 701 were significantly down-regulated. Among the 718 DEPs, 562 were annotated and classified into 30 functional groups by GO (gene ontology) analysis. KEGG (Kyoto Encyclopedia of Genes and Genomes) enrichment analysis linked 562 DEPs to 133 different biochemical pathways, involving glycolysis, the tricarboxylic acid cycle (TCA cycle), and purine metabolism. Additional experiments indicated that TTO destroys cell membranes and decreases the activities of three enzymes related to the TCA cycle. Our results suggest that TTO treatment inhibits glycolysis, disrupts the TCA cycle, and induces mitochondrial dysfunction, thereby disrupting energy metabolism. This study provides new insights into the mechanisms underlying the antifungal activity of essential oils.
机译:茶树油(TTO)是一种挥发性精油,是通过蒸气蒸馏从澳大利亚千叶白千层的叶子中获得的。以前,我们证明了TTO对灰葡萄孢具有很强的抑制作用。这项研究在分子水平上研究了潜在的抗真菌机制。蛋白质组学方法使用同量异位标签进行相对和绝对定量(iTRAQ),以研究TTO对灰葡萄孢的影响。在TTO处理的样品中共鉴定出718种差异表达蛋白(DEP),其中17种显着上调,而701种显着下调。在718个DEP中,有562个被注释,并通过GO(基因本体)分析分为30个功能组。 KEGG(基因与基因组京都百科全书)富集分析将562个DEP与133个不同的生化途径相关联,涉及糖酵解,三羧酸循环(TCA循环)和嘌呤代谢。其他实验表明,TTO破坏细胞膜并降低与TCA循环有关的三种酶的活性。我们的结果表明,TTO治疗可抑制糖酵解,破坏TCA循环,并诱导线粒体功能障碍,从而破坏能量代谢。这项研究提供了对精油抗真菌活性的潜在机制的新见解。

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