Metabolomics-Based Comprehensive Exploration of the Bioactive Compound in Saposhnikovia divaricata (Turcz.) Schischk. in Response to Exogenous Nitrogen.

IF 2.6 3区 生物学 Q2 BIOCHEMICAL RESEARCH METHODS
Phytochemical Analysis Pub Date : 2025-10-01 Epub Date: 2025-08-14 DOI:10.1002/pca.70015
Hui Zhi, Sen Shi, Yun Guo, Zhonghua Tang
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引用次数: 0

Abstract

Background: Saposhnikovia divaricata (Turcz.) Schischk. (S. divaricata), a traditional Chinese medicine, is renowned for its dried roots rich in phenolic compounds, which exhibit significant medicinal values in anti-inflammatory, analgesic, and other therapeutic fields. Cultivating medicinal plants has been validated as an effective strategy to enhance the supply of phenolic-rich raw materials. However, the efficient fertilization strategy of nitrogen-a key nutrient-and its regulatory mechanisms on plant growth and phenolic metabolism in S. divaricata remain unclear.

Purpose and study design: This study aimed to explore nitrogen's effects on S. divaricata growth and phenolic accumulation. Field experiments used four nitrogen treatments: no nitrogen fertilization (CK), low nitrogen fertilization (9 g/m²), medium nitrogen fertilization (18 g/m²), and high nitrogen fertilization (27 g/m²). Growth indices and phenolic metabolites were analyzed via UPLC-MS and multivariate statistics.

Results: The results showed that the medium nitrogen treatment (18 g/m²) significantly promoted the growth of S. divaricata, with plant height and single-plant biomass reaching 26 ± 0.3 cm and 19.04 ± 0.96 g, respectively, and optimal root development (root length 14.7 ± 0.2 cm). Additionally, nitrogen application significantly promoted the synthesis of phenolic compounds and enhanced the tolerance of S. divaricata to nitrogen stress, which is conducive to safeguarding and elevating its medicinal value. For specific bioactive substances, the contents of prim-o-glucosyl-cimifugin, 4'-o-β-glucosyl-5-o-methylvisamminol, cimifugin, and sec-o-glucosylhamaudol in S. divaricata under medium nitrogen concentration were notably higher than those in the no-nitrogen fertilization group.

Conclusion: This study confirms that medium nitrogen levels can synergistically enhance the growth and accumulation of medicinal active components in S. divaricata, providing a theoretical basis for the precise application of nitrogen fertilizers and quality regulation in medicinal plant cultivation.

基于代谢组学的三叶草生物活性化合物的综合研究Schischk。对外源氮的响应
背景:Saposhnikovia divaricata (Turcz)Schischk。(S. divaricata)是一种传统中药,以其富含酚类化合物的干根而闻名,在抗炎、镇痛和其他治疗领域具有重要的药用价值。培育药用植物已被证实是增加富含酚类原料供应的有效策略。然而,氮素作为一种关键营养物质的有效施肥策略及其对植物生长和酚代谢的调控机制尚不清楚。目的与研究设计:本研究旨在探讨氮素对金银花生长和酚积累的影响。田间试验采用不施氮(CK)、低施氮(9 g/m²)、中施氮(18 g/m²)和高施氮(27 g/m²)4种氮肥处理。通过UPLC-MS和多元统计分析生长指标和酚类代谢产物。结果:中等氮肥处理(18 g/m²)显著促进了金针叶的生长,株高和单株生物量分别达到26±0.3 cm和19.04±0.96 g,根系发育最佳(根长14.7±0.2 cm)。此外,施氮显著促进了多酚类化合物的合成,增强了多酚类化合物对氮胁迫的耐受性,有利于保护和提升多酚类化合物的药用价值。在特定生物活性物质方面,中等氮肥处理下,山楂中prim-o-glucosyl-cimifugin、4'-o-β-glucosyl-5-o-methylvisamminol、cimifugin和secs -o-glucosyl- hamaudool的含量显著高于无氮肥处理组。结论:本研究证实了中等氮素水平可协同促进金针叶药用活性成分的生长和积累,为药用植物栽培中氮肥的精准施用和质量调控提供了理论依据。
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来源期刊
Phytochemical Analysis
Phytochemical Analysis 生物-分析化学
CiteScore
6.00
自引率
6.10%
发文量
88
审稿时长
1.7 months
期刊介绍: Phytochemical Analysis is devoted to the publication of original articles concerning the development, improvement, validation and/or extension of application of analytical methodology in the plant sciences. The spectrum of coverage is broad, encompassing methods and techniques relevant to the detection (including bio-screening), extraction, separation, purification, identification and quantification of compounds in plant biochemistry, plant cellular and molecular biology, plant biotechnology, the food sciences, agriculture and horticulture. The Journal publishes papers describing significant novelty in the analysis of whole plants (including algae), plant cells, tissues and organs, plant-derived extracts and plant products (including those which have been partially or completely refined for use in the food, agrochemical, pharmaceutical and related industries). All forms of physical, chemical, biochemical, spectroscopic, radiometric, electrometric, chromatographic, metabolomic and chemometric investigations of plant products (monomeric species as well as polymeric molecules such as nucleic acids, proteins, lipids and carbohydrates) are included within the remit of the Journal. Papers dealing with novel methods relating to areas such as data handling/ data mining in plant sciences will also be welcomed.
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