Jaiswal Ravi Prakash, Chugh Vishal, Nagar Sushil, Purwar Shalini, Azam Akbare, Verma Ankit
Department of Chemistry, Government Girl's P.G. College, Ghazipur 233001, Uttar Pradesh, India.
Department of Basic and Social Sciences, College of Horticulture, Banda University of Agriculture and Technology, Banda 210001, Uttar Pradesh, India.
Biochem Res Int. 2025 Jun 24;2025:7121687. doi: 10.1155/bri/7121687. eCollection 2025.
This study presents the comparative and preliminary phytochemical analysis of essential oils extracted from 5 different species, including Linn, Sims, , Linn Linn. The gas chromatography coupled with single quadrupole mass spectrometry was employed for the screening of the different metabolites. The present study investigates a total number of 111 bioactive compounds which were identified across the five species, with exhibiting the highest diversity. The analysis revealed significant variations in the chemical profiles, attributed to differing eco-climatic conditions. Key bioactive compounds, such as -pinene, linalool and caryophyllene, were consistently found across species. The study also mapped these compounds to metabolic pathways, highlighting their roles in monoterpenoid, phenylpropanoid and sesquiterpenoid biosynthesis. Detailed analysis of , , , and oils demonstrated unique metabolic properties, with each species showing distinct pathway activations and dominant compounds. The findings were validated using principal component analysis and hierarchical clustering analysis, confirming the species' chemical diversity and distinct clustering. This comprehensive characterization enhances our understanding of spp. essential oils, offering valuable insights for their pharmaceutical, food and cosmetic applications.
本研究对从5种不同植物中提取的精油进行了比较和初步的植物化学分析,这5种植物包括[具体植物名称1] Linn、[具体植物名称2] Sims、[具体植物名称3]、[具体植物名称4] Linn和[具体植物名称5] Linn。采用气相色谱-单四极杆质谱联用技术对不同代谢产物进行筛选。本研究共调查了在这5种植物中鉴定出的111种生物活性化合物,其中[具体植物名称6]表现出最高的多样性。分析表明,由于生态气候条件不同,化学图谱存在显著差异。在所有物种中均一致发现了关键生物活性化合物,如α-蒎烯、芳樟醇和石竹烯。该研究还将这些化合物映射到代谢途径,突出了它们在单萜、苯丙烷和倍半萜生物合成中的作用。对[具体植物名称7]、[具体植物名称8]、[具体植物名称9]、[具体植物名称10]和[具体植物名称11]精油的详细分析表明它们具有独特的代谢特性,每个物种都表现出不同的途径激活和优势化合物。研究结果通过主成分分析和层次聚类分析得到验证,证实了物种的化学多样性和明显的聚类。这种全面的表征增强了我们对[植物属名] spp.精油的理解,为其在制药、食品和化妆品应用方面提供了有价值的见解。