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伊朗产长柄荆芥(唇形科)精油成分、形态特征、酚类含量和抗氧化活性研究。

Essential oil composition, morphological characterization, phenolic content and antioxidant activity of Iranian populations of Hymenocrater longiflorus Benth. (Lamiaceae).

机构信息

Department of Horticulture, Faculty of Agriculture, Urmia University, Urmia, Iran.

出版信息

Sci Rep. 2024 Mar 27;14(1):7239. doi: 10.1038/s41598-024-57826-0.

Abstract

The study focused on the morphological and chemical characteristics of 200 Hymenocrater longiflorus Benth. genotypes found in natural habitats of eight regions in west of Iran. The primary objective of the study was to assess the morphological and phytochemical variability within populations grown in their natural habitats, with the aim of identifying their potential for domestication and utilization in pre-breeding programs. The plant height (PH) ranged from 50.32 to 69.65 cm, with the highest observed in population P8. The internode distances ranged from 4.7 to 6.47 cm, with the maximum distance found in P4. Flower lengths varied from 1.95 to 2.45 cm, with the minimum and maximum values observed in P4 and P3, respectively. The highest leaf length (5.20 cm) and width (3.87 cm) were recorded in P2. The aerial parts of the plant were utilized to extraction and determine the essential oil (EO) content and composition, which ranged from 0.40 to 0.78% (v/w). The analysis of EO by gas chromatography (GC) and gas chromatography mass spectrometry (GC/MS) identified 26 compounds, constituting 99-99.5% of the EOs. The main compounds in the EO and their percentage range (v/w DW) were tau-cadinol (0.62-55.56), mono (2-ethylhexyl) phthalate (8.10-94.70), elemol (0.21-19.11), β-spathulenol (0.08-14.39), 4-terpineol (0.23-10.19), and β-eudesmol (0.21-9.94). The main chemical groups found in EOs included oxygenated sesquiterpenes (1.12-68.43), and phthalates (9.73-94.72). Cluster analysis revealed three distinct chemotypes: chemotype I (populations 1 and 2) with major components of mono (2-ethylhexyl) phthalate, tau-cadinol, and α-elemol; chemotype II (population 5) rich in mono (2-ethylhexyl) phthalate; and chemotype III (populations 3, 4, 6-8) containing tau-cadinol, β-eudesmol, and 4-terpineol. The study also evaluated total phenolic, total flavonoid, and DPPH free radical scavenging activity in the fifty percent inhibitory concentration (IC50) in leaf and flower samples of the genotypes, along with estimating total anthocyanin content in the flower samples. The total phenolic content (TPC) in leaf and flower samples ranged from 7.89 to 107.18 mg GAE/g DW and 39.98 to 86.62 mg gallic acid equivalent (GAE)/g DW, respectively. Total flavonoid content (TFC) ranged from 81.04 to 143.46 mg QUE/g DW in leaf samples and from 94.82 to 133.26 mg quercetin equivalent (QUE)/g DW in flower samples. DPPHsc IC50 (µg/mL) ranged from 0.65 to 78.74 in leaf samples and from 4.38 to 7.71 in flower samples. Anthocyanin content ranged from 1.89 to 3.75 mg cyanidin-3-glucoside equivalent (C3GE)/g DW among populations. Canonical correspondence analysis and simple correlation demonstrated a strong association and correlations among the studied attributes. The negative correlations between leaf DPPH (DPPH L) IC50 and TFC (- 0.73), TPC (- 0.63), Elemol (- 0.90), and EO (- 0.85) indicate that these compounds have a significant impact on the antioxidant activity of the leaves. Furthermore, Fruit DPPH (DPPH F) IC50 showed a negative correlation with TPC (- 0.79) and TFC (- 0.78), but a positive correlation with flower anthocyanins (0.51), (Z)-β-Farnesene (0.66), and 4-Terpineol (0.57). Circular cluster analysis categorized the genotypes of all individuals in the eight studied populations into three main categories based on all the studied traits, indicating significant variation in phytochemical and morphological traits among populations, surpassing the within-populations variation.

摘要

本研究聚焦于在伊朗西部八个地区的自然生境中发现的 200 株长叶海罂粟(Hymenocrater longiflorus Benth.)基因型的形态和化学特征。该研究的主要目的是评估在其自然栖息地中生长的种群的形态和植物化学变异性,以期确定其在预繁殖计划中的驯化和利用潜力。植物高度(PH)范围为 50.32 至 69.65 厘米,最高值出现在种群 P8 中。节间距离范围为 4.7 至 6.47 厘米,最大值出现在 P4 中。花长范围为 1.95 至 2.45 厘米,最小值和最大值分别出现在 P4 和 P3 中。P2 中叶片的最大长度(5.20 厘米)和宽度(3.87 厘米)。利用植物的地上部分进行提取,并确定精油(EO)含量和组成,范围为 0.40 至 0.78%(v/w)。气相色谱(GC)和气相色谱-质谱联用(GC/MS)分析鉴定出 26 种化合物,占 EO 的 99-99.5%。EO 中的主要化合物及其百分比范围(v/w DW)为 tau-cadinol(0.62-55.56)、单(2-乙基己基)邻苯二甲酸酯(8.10-94.70)、elemol(0.21-19.11)、β-spathulenol(0.08-14.39)、4-萜烯醇(0.23-10.19)和β-桉叶醇(0.21-9.94)。EO 中的主要化学组包括含氧倍半萜(1.12-68.43)和邻苯二甲酸酯(9.73-94.72)。聚类分析显示出三种不同的化学型:化学型 I(种群 1 和 2),主要成分包括单(2-乙基己基)邻苯二甲酸酯、tau-cadinol 和α-elemol;化学型 II(种群 5)富含单(2-乙基己基)邻苯二甲酸酯;和化学型 III(种群 3、4、6-8),含有 tau-cadinol、β-桉叶醇和 4-萜烯醇。该研究还评估了基因型叶片和花样品中的总酚、总类黄酮和 DPPH 自由基清除活性的 50%抑制浓度(IC50),并估计了花样品中的总花青素含量。叶片和花样品中的总酚含量(TPC)范围分别为 7.89 至 107.18 mg GAE/g DW 和 39.98 至 86.62 mg 没食子酸当量(GAE)/g DW。总类黄酮含量(TFC)范围分别为 81.04 至 143.46 mg QUE/g DW 叶片样品和 94.82 至 133.26 mg 槲皮素当量(QUE)/g DW 花样品。DPPHsc IC50(μg/mL)范围分别为 0.65 至 78.74 叶片样品和 4.38 至 7.71 花样品。花青素含量范围为 1.89 至 3.75 mg 矢车菊-3-葡萄糖苷当量(C3GE)/g DW 之间。典范对应分析和简单相关分析表明,研究属性之间存在很强的关联和相关性。叶片 DPPH(DPPH L)IC50 与 TFC(-0.73)、TPC(-0.63)、elemol(-0.90)和 EO(-0.85)之间的负相关表明,这些化合物对叶片的抗氧化活性有显著影响。此外,花 DPPH(DPPH F)IC50 与 TPC(-0.79)和 TFC(-0.78)呈负相关,但与花花青素(0.51)、(Z)-β-法呢烯(0.66)和 4-萜烯醇(0.57)呈正相关。圆形聚类分析根据所有研究性状将八个研究种群中的所有个体的基因型分为三大类,表明种群间在植物化学和形态特征上存在显著变异,超过了种群内的变异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf1e/10973450/ef6de5171401/41598_2024_57826_Fig1_HTML.jpg

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