Yan Xinru, Zhang Ao, Guan Yiming, Jiao Jinlong, Ghanim Murad, Zhang Yayu, He Xiahong, Shi Rui
Yunnan Provincial Key Laboratory for Conservation and Utilization of In-Forest Resource, International Ecological Forestry Research Center of Kunming, Southwest Forestry University, Kunming 650224, China.
Institute of Special Wild Economic Animal and Plant Science, Chinese Academy of Agricultural Sciences, Changchun 130112, China.
Plants (Basel). 2024 May 23;13(11):1441. doi: 10.3390/plants13111441.
is a perennial plant well known for its versatile medicinal properties, including hepatoprotective, antioxidant, anti-inflammatory, anti-tumor, estrogen-like, and antidepressant characteristics. It has been reported that plant age affects the quality of . This study aimed to explore the differential metabolome and transcriptome of 2-year (PN2) and 3-year-old (PN3) plant root samples. Principal component analysis of metabolome and transcriptome data revealed major differences between the two groups (PN2 vs. PN3). A total of 1813 metabolites and 28,587 genes were detected in this study, of which 255 metabolites and 3141 genes were found to be differential ( < 0.05) between PN2 vs. PN3, respectively. Among differential metabolites and genes, 155 metabolites and 1217 genes were up-regulated, while 100 metabolites and 1924 genes were down-regulated. The KEGG pathway analysis revealed differentially enriched metabolites belonging to class lipids ("13S-hydroperoxy-9Z, 11E-octadecadionic acid", "9S-hydroxy-10E, 12Z-octadecadionic acid", "9S-oxo-10E, 12Z-octadecadionic acid", and "9,10,13-trihydroxy-11-octadecadionic acid"), nucleotides and derivatives (guanine and cytidine), and phenolic acids (chlorogenic acid) were found to be enriched ( < 0.05) in PN3 compared to PN2. Further, these differentially enriched metabolites were found to be significantly ( < 0.05) regulated via linoleic acid metabolism, nucleotide metabolism, plant hormone signal transduction, and arachidonic acid metabolism pathways. Furthermore, the transcriptome analysis showed the up-regulation of key genes , , , gallate 1-beta-glucosyltransferase, and beta-D-glucosidase in various plants' secondary metabolic pathways and , , , , , , and genes observed in phytohormone signal transduction pathway that is involved in plant growth and development, and protection against the various stressors. This study concluded that the roots of a 3-year-old plant have better metabolome and transcriptome profiles compared to a 2-year-old plant with importantly enriched metabolites and genes in pathways related to metabolism, plant hormone signal transduction, and various biological processes. These findings provide insights into the plant's dynamic biochemical and molecular changes during its growth that have several implications regarding its therapeutic use.
是一种多年生植物,因其具有多种药用特性而闻名,包括保肝、抗氧化、抗炎、抗肿瘤、雌激素样和抗抑郁特性。据报道,植物年龄会影响其品质。本研究旨在探索两年生(PN2)和三年生(PN3)植物根样本的差异代谢组和转录组。代谢组和转录组数据的主成分分析揭示了两组(PN2与PN3)之间的主要差异。本研究共检测到1813种代谢物和28587个基因,其中分别发现255种代谢物和3141个基因在PN2与PN3之间存在差异(<0.05)。在差异代谢物和基因中,155种代谢物和1217个基因上调,而100种代谢物和1924个基因下调。KEGG通路分析显示,与PN2相比,PN3中属于脂质类(“13S-氢过氧-9Z,11E-十八碳二烯酸”、“9S-羟基-10E,12Z-十八碳二烯酸”、“9S-氧代-10E,12Z-十八碳二烯酸”和“9,10,13-三羟基-11-十八碳二烯酸”)、核苷酸及其衍生物(鸟嘌呤和胞苷)以及酚酸(绿原酸)的差异富集代谢物显著富集(<0.05)。此外,这些差异富集的代谢物通过亚油酸代谢、核苷酸代谢、植物激素信号转导和花生四烯酸代谢途径受到显著(<0.05)调控。此外,转录组分析表明,各种植物次生代谢途径中的关键基因、、、没食子酸1-β-葡萄糖基转移酶和β-D-葡萄糖苷酶上调,以及在参与植物生长发育和抵御各种应激源的植物激素信号转导途径中观察到的、、、、、和基因上调。本研究得出结论,与两年生植物相比,三年生植物的根具有更好的代谢组和转录组谱,在与代谢、植物激素信号转导和各种生物学过程相关的途径中,代谢物和基因显著富集。这些发现为植物生长过程中的动态生化和分子变化提供了见解,对其治疗用途具有重要意义。