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基于精油成分的埃塞俄比亚黑种草(L.)的多样性

Diversity of Ethiopian Black Cumin ( L.) Based on Compositions of Essential Oil.

作者信息

Degu Basazinew, Tesfaye Bizuayehu, Abebe Wendawek, Assefa Kebebew

机构信息

Wondo Genet Agricultural Research Center, Ethiopian Institute of Agricultural Research, P.O. Box 198, Shashemene, Ethiopia.

School of Plant and Horticultural Science, Hawassa University, P.O. Box 05, Hawassa, Ethiopia.

出版信息

Biochem Res Int. 2025 Apr 28;2025:2065593. doi: 10.1155/bri/2065593. eCollection 2025.

Abstract

Black cumin ( L.) seeds essential oil compositions (EOCs) have been used for their medicinal and aromatic values across the world since ancient times. Studies have revealed the presence of variability among black cumin genotypes in EOCs. In Ethiopia, few studies have been conducted to explore the variability of black cumin genotypes by using EOCs. This study investigated the variability of Ethiopian black cumin genotypes (EBCGs) by EOCs. Seeds of 64 genotypes were used for this experiment. Composite samples of 100 g of seeds were collected and roughly ground from each genotype. The extraction was made by hydrodistillation using a Clevenger-type apparatus for 3 h, and the essential oil was collected by measuring the amount using a measuring pipette. The essential oil samples were stored in a refrigerator at 4°C until gas chromatography-mass spectrometry (GC-MS) analysis. Descriptive statistics was used to estimate the variations among populations' combined mean values of EOCs using the SAS version 9.4 software package. The correlation and hierarchical clustering analysis were made based on the combined mean values of EOCs using the R-software version 4.2.2 packages. A total of 21 EOCs were detected from the essential oil of 64 EBCGs using GC-MS, out of which ρ-cymene, thymoquinone, α-thujene, carvacrol, -4-methoxythujane, longifolene, terpinen-4-ol, β-pinene, α-pinene, and -limonene dominated the essential oils. Among these, ρ-cymene, thymoquinone, α-thujene, -4-methoxythujane, and carvacrol were the most abundant constituents in all genotypes, while the rest varied among the genotypes. It is predicted that the major EOCs will be improved by 25.33%-152.14% over improved varieties by selecting the top 5% of landraces. The abundant EOC thymoquinone had a significant and positive correlation with carvacrol and a strong and significant negative correlation with α-thujene, α-pinene, β-pinene, ρ-cymene, and -limonene. Based on the major EOCs, cluster analysis grouped the 64 genotypes into two different chemotypes. Cluster-I: Chemotype A is characterized by a high content of thymoquinone. Cluster-II: Chemotype B is characterized by a high content of ρ-cymene. The presence of the most abundant volatile constituents in genotypes 242835, 9068, and 014_ATH means they are essential for the pharmaceutical and food industries. This study disclosed the existence of a significant diversity of EOCs among the Ethiopian genotypes, which can be exploited for future improvement programs.

摘要

黑种草(L.)种子精油成分(EOCs)自古以来就在世界各地因其药用和芳香价值而被使用。研究表明,黑种草基因型之间的EOCs存在变异性。在埃塞俄比亚,很少有研究通过EOCs来探索黑种草基因型的变异性。本研究通过EOCs调查了埃塞俄比亚黑种草基因型(EBCGs)的变异性。本实验使用了64个基因型的种子。从每个基因型中收集100克种子的混合样本并进行粗磨。使用克利夫enger型装置通过水蒸馏法提取3小时,并用移液管测量收集精油的量。精油样品储存在4°C的冰箱中,直至进行气相色谱 - 质谱(GC - MS)分析。使用SAS 9.4软件包进行描述性统计,以估计EOCs群体组合平均值之间的差异。基于EOCs的组合平均值,使用R软件4.2.2包进行相关性和层次聚类分析。使用GC - MS从64个EBCGs的精油中总共检测到21种EOCs,其中对伞花烃、百里醌、α - 侧柏烯、香芹酚、 - 4 - 甲氧基侧柏烷、长叶烯、萜品烯 - 4 - 醇、β - 蒎烯、α - 蒎烯和 - 柠檬烯在精油中占主导地位。其中,对伞花烃、百里醌、α - 侧柏烯、 - 4 - 甲氧基侧柏烷和香芹酚是所有基因型中含量最高的成分,而其他成分在不同基因型中有所不同。预计通过选择前5%的地方品种,主要EOCs将比改良品种提高25.33% - 152.14%。含量丰富的EOC百里醌与香芹酚呈显著正相关,与α - 侧柏烯、α - 蒎烯、β - 蒎烯、对伞花烃和 - 柠檬烯呈强烈显著负相关。基于主要EOCs,聚类分析将64个基因型分为两种不同的化学类型。聚类 - I:化学类型A的特征是百里醌含量高。聚类 - II:化学类型B的特征是对伞花烃含量高。基因型242835、9068和014_ATH中存在最丰富的挥发性成分,这意味着它们对制药和食品工业至关重要。本研究揭示了埃塞俄比亚基因型之间EOCs存在显著多样性,可用于未来的改良计划。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f030/12052447/0fecfa53155a/BRI2025-2065593.001.jpg

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