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Metabolome and transcriptome analysis reveals the molecular profiles underlying the ginseng response to rusty root symptoms

机译:代谢物和转录组分析揭示了人参对生锈根系症状的基人参曲线的分子曲线

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Ginseng rusty root symptoms (GRS) is one of the primary diseases of ginseng. This disease leads to a severe decline in the quality of ginseng. It has been shown that the occurrence of GRS is associated with soil environmental degradation, which may involve changes in soil microbiology and physicochemical properties. In this study, GRS and healthy ginseng (HG) samples were used as experimental materials for comparative analysis of transcriptome and metabolome. Compared with those in HG samples, 949 metabolites and 9451 genes were significantly changed at the metabolic and transcriptional levels in diseased samples. The diseased tissues’ metabolic patterns changed, and the accumulation of various organic acids, alkaloids, alcohols and phenols in diseased tissues increased significantly. There were significant differences in the expression of genes involved in plant hormone signal transduction, phenylpropanoid biosynthesis, the peroxidase pathway, and the plant-pathogen interaction pathway. The current study involved a comparative metabolome and transcriptome analysis of GRS and HG samples. Based on the findings at the transcriptional and metabolic levels, a mechanism model of the ginseng response to GRS was established. Our results provide new insights into ginseng’s response to GRS, which will reveal the potential molecular mechanisms of this disease in ginseng.
机译:人参生锈根症状(GRS)是人参的原发性疾病之一。这种疾病导致人参质量的严重下降。已经表明,GR的发生与土壤环境降解相关,这可能涉及土壤微生物学和物理化学性质的变化。在本研究中,将GR和健康人参(HG)样品用作转录组和代谢物的比较分析的实验材料。与Hg样品中的那些相比,在患病样品的代谢和转录水平上显着改变了949个代谢物和9451个基因。患病组织的代谢模式改变,并且患病组织中各种有机酸,生物碱,醇和酚的积累显着显着增加。植物激素信号转导的基因表达存在显着差异,苯丙醇丙烷生物合成,过氧化物酶途径和植物 - 病原体相互作用途径。目前的研究涉及GRS和HG样品的比较代谢和转录组分析。基于转录和代谢水平的发现,建立了对GRS的人参反应的机制模型。我们的结果为人参对GRS的反应提供了新的洞察力,这将揭示人参潜在该疾病的潜在分子机制。

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