Metabolomic Analysis of Lycoris radiata across Developmental and Dormancy Stages

Xueru Jiang, Xu Wei, Hua Cheng, Xin You, Junhuo Cai
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Abstract

The Lycoris radiata (L’ Herit.) Herb. is a perennial bulbous plant characterized by its high ornamental and medicinal value, exhibiting a unique growth rhythm where the flower and leaf do not coexist and a period of summer dormancy. However, its metabolic response to various developmental stages remains unclear. To address this gap, we conducted a non-targeted metabolomic analysis spanning six developmental stages of L. radiata. The results showed that most differentially accumulated metabolites (DAMs) demonstrated enrichment predominantly in carbohydrate and amino acid metabolism pathways, with the former being more active during vegetative growth and the latter during reproductive stages. The proportion of DAMs categorized under “quaternary ammonium salts”, “tricarboxylic acids and derivatives”, “fatty acids and conjugates”, and “pyrimidine nucleotide sugars” was notably higher in comparisons between the flowering and dormancy stages than in other comparative groups. Furthermore, DAMs involved in the KEGG pathways of C5-branched dibasic acid metabolism and lysine biosynthesis were uniquely identified during the transition from Dormancy to Flowering. The proportion of DAMs associated with “linoleic acids and derivatives” and “pyridines and pyridine derivatives” was notably higher in the leafing out versus flowering comparison than in other comparative groups. Furthermore, the glycolysis/gluconeogenesis pathway was uniquely enriched by DAMs during this phase. This study provided an in-depth view of metabolite changes in L. radiata over its annual growth cycle, enriching our understanding of the regulatory mechanisms governing its development, dormancy, and flowering.
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不同发育阶段和休眠期的石蒜代谢组分析
Lycoris radiata (L' Herit.) Herb.是一种多年生球根植物,具有很高的观赏价值和药用价值,其生长节律独特,花叶不共生,夏季休眠。然而,它在不同发育阶段的代谢反应仍不清楚。为了填补这一空白,我们对萝芙木的六个发育阶段进行了非靶向代谢组学分析。结果表明,大多数差异积累代谢物(DAMs)主要在碳水化合物和氨基酸代谢途径中富集,前者在无性生长期间更为活跃,后者在生殖阶段更为活跃。在开花期和休眠期的比较中,"季铵盐"、"三羧酸及衍生物"、"脂肪酸及共轭物 "和 "嘧啶核苷酸糖 "类 DAMs 的比例明显高于其他比较组。此外,在从休眠期向开花期过渡的过程中,涉及 C5-支链二元酸代谢和赖氨酸生物合成的 KEGG 通路的 DAMs 被独特地鉴定出来。与 "亚油酸及衍生物 "和 "吡啶及吡啶衍生物 "相关的 DAMs 比例在落叶与开花比较组中明显高于其他比较组。此外,在这一阶段,糖酵解/葡萄糖生成途径中的 DAMs 独一无二地丰富。这项研究深入揭示了L. radiata在年生长周期中代谢物的变化,丰富了我们对其发育、休眠和开花调控机制的认识。
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