山梨(Sorbus domestica)、杜鹃(S. aucuparia)和山梨(S. torminalis)花序的植物化学成分和抗菌活性

IF 0.8 Q2 Environmental Science Biosystems Diversity Pub Date : 2023-07-19 DOI:10.15421/012333
Y. Lykholat, N. О. Khromykh, O. V. Liashenko, T. V. Sklyar, A. O. Anishchenko, O. K. Balalaiev, T. A. Holubieva, T. Lykholat
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GC–MS profiling of the hexane extracts of S. domestica, S. aucuparia, and S. torminalis inflorescences identified a total of 87 components, which represented six chemical classes (hydrocarbons, alcohols, esters, fatty acid, aldehydes, and ketones) and miscellaneous minor floral constituents (1-methylinosine, 5-amino tetrazole, 1,4-dimethylbenzene, 3,5-bis(1,1-dimethylethyl)-phenol, 3-acetoxy-7,8-epoxylanostan-11-ol, cycloeucalenol acetate, etc.). Principal component analysis (PCA) of the qualitative and quantitative heterogeneity of the floral metabolites determined 1-hentetracontanol, nonacosane, pentadecyl acrylate, 1-methylhexacosane, cycloeucalenol acetate, butyl acetate, and urs-12-ene as the main components which contributed to the differences between S. domestica, S. aucuparia and S. torminalis and resulted in the distinction between the rowan species. 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引用次数: 0

摘要

山梨属(Sorbus L.)因其极其复杂的分类学关系及其花朵成分中包含的促进健康的植物化学物质而闻名。为了研究其代谢物可能具有的化学分类学价值和抗菌价值,我们研究了三种具有不同分子遗传特征的山梨属植物(小叶女贞)的花序。对 S. domestica、S. aucuparia 和 S. torminalis 花序的正己烷提取物进行了 GC-MS 分析。torminalis)花序的正己烷萃取物中鉴定出了 87 种成分,它们代表了六种化学类别(烃、醇、酯、脂肪酸、醛和酮)和其他次要成分、和酮类)以及其他次要花香成分(1-甲基肌苷、5-氨基四氮唑、1,4-二甲基苯、3,5-双(1,1-二甲基乙基)苯酚、3-乙酰氧基-7,8-环氧基木香烷-11-醇、环丁香烯醇乙酸酯等)。).对花代谢物的定性和定量异质性进行的主成分分析(PCA)确定,1-hentetracontanol、壬基二十烷、丙烯酸十五酯、1-甲基二十烷、乙酸环桉烯醇酯、乙酸丁酯和urs-12-ene 是造成 S.domestica、S. aucuparia 和 S. torminalis 之间差异的主要成分,也是区分楸树物种的主要成分。圆盘扩散试验表明,花序萃取物对革兰氏阴性(溶解肠杆菌、大肠杆菌、铜绿假单胞菌和肺炎克雷伯菌)和革兰氏阳性(溶血微球菌、金黄色葡萄球菌和表皮葡萄球菌)细菌和临床真菌(白色念珠菌)菌株的活性存在差异。托木纳尔菌对表皮葡萄球菌和绿脓杆菌的抗菌效果较高,而对临床白色念珠菌菌株的抗菌效果最低。S. domestica 的花序对绿脓杆菌的抑制率最高,对表皮葡萄球菌和白僵菌的抑制率中等。S. aucuparia 的花序对革兰氏阳性和革兰氏阴性细菌菌株的生长都有低到中等程度的抑制作用,而对白僵菌的抑制作用最大。花楸花序的抗菌特性可能归因于油酸、亚油酸、花生四烯酸、十六烷酸和十五烷酸、24-去甲-3,12-二烯、六氢法呢醇丙酮、环杜仲烯醇乙酸酯以及其他已知具有生物活性的化合物。这些发现表明花楸花序是宝贵的次生代谢物的丰富来源,并使我们能够将花朵成分作为山梨属物种的化学分类标记。
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Phytochemical profiles and antimicrobial activity of the inflorescences of Sorbus domestica, S. aucuparia, and S. torminalis
The genus Sorbus L. is known for its extremely complex taxonomical relationships and health-promoting phytochemicals included in the composition of its floral constituents. The inflorescences of three Sorbus species (rowans), characterized by distinct molecular-genetic traits, were studied in order to examine the possible chemotaxonomic and antimicrobial value of their metabolites. GC–MS profiling of the hexane extracts of S. domestica, S. aucuparia, and S. torminalis inflorescences identified a total of 87 components, which represented six chemical classes (hydrocarbons, alcohols, esters, fatty acid, aldehydes, and ketones) and miscellaneous minor floral constituents (1-methylinosine, 5-amino tetrazole, 1,4-dimethylbenzene, 3,5-bis(1,1-dimethylethyl)-phenol, 3-acetoxy-7,8-epoxylanostan-11-ol, cycloeucalenol acetate, etc.). Principal component analysis (PCA) of the qualitative and quantitative heterogeneity of the floral metabolites determined 1-hentetracontanol, nonacosane, pentadecyl acrylate, 1-methylhexacosane, cycloeucalenol acetate, butyl acetate, and urs-12-ene as the main components which contributed to the differences between S. domestica, S. aucuparia and S. torminalis and resulted in the distinction between the rowan species. Disc-diffusion assays showed variability in activity of inflorescence extracts against Gram-negative (Enterobacter dissolvens, Escherichia coli, Pseudomonas aeruginosa, and Klebsiella pneumoniae) and Gram-positive (Micrococcus lysodeikticus, Staphylococcus aureus, and S. epidermidis) bacterial and clinical fungal (Candida albicans) strains. The effect of S. torminalis was high against S. epidermidis and P. aeruginosa, while it was at its lowest against clinical C. albicans strains. Inflorescences of S. domestica showed the highest inhibition of P. aeruginosa, and moderate effects against S. epidermidis and C. albicans. Inflorescences of S. aucuparia caused low to moderate growth inhibition of both Gram-positive and Gram-negative bacterial strains, while it showed the highest effect on C. albicans. Antimicrobial properties of rowan inflorescences may be attributed to oleic, linoleic, arachidic, hexadecanoic, and pentadecanoic acids, 24-norursa-3,12-diene, hexahydrofarnesyl acetone, cycloeucalenol acetate, and other compounds which have known bioactivity. These findings indicated rowan inflorescences as a rich source of valuable secondary metabolites and allow us to assume an application of the floral constituents as chemotaxonomic markers of the genus Sorbus species.
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