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Profile of Polyphenolic and Essential Oil Composition of Polish Propolis Black Poplar and Aspens Buds

机译:波兰蜂胶黑杨树和白杨芽的多酚和精油成分的概况

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摘要

In this work, we studied similarities and differences between 70% ethanol in water extract (70EE) and essential oils (EOs) obtained from propolis, black poplars (Populus nigra L.) and aspens (P. tremula L.) to ascertain which of these is a better indicator of the plant species used by bees to collect propolis precursors. Composition of 70EE was analyzed by UPLC-PDA-MS, while GC-MS was used to research the EOs. Principal component analyses (PCA) and calculations of Spearman’s coefficient rank were used for statistical analysis. Statistical analysis exhibited correlation between chemical compositions of propolis and Populus buds’ 70EE. In the case of EOs, results were less clear. Compositions of black poplars, aspens EOs and propolises have shown more variability than 70EE. Different factors such as higher instability of EOs compared to 70EE, different degradation pattern of benzyl esters to benzoic acid, differences in plant metabolism and bees’ preferences may be responsible for these phenomena. Our research has therefore shown that 70EE of propolis reflected the composition of P. nigra or complex aspen–black poplar origin.
机译:在这项工作中,我们研究了水提取物(70EE)中的70%乙醇与从蜂胶,黑杨(Populus nigra L.)和白杨(P. tremula L.)获得的精油(EOs)之间的相似性和差异,以确定哪个这些是蜜蜂用来收集蜂胶前体的植物物种的更好指标。用UPLC-PDA-MS分析了70EE的组成,而GC-MS则用于研究EO。主成分分析(PCA)和Spearman系数等级的计算用于统计分析。统计分析表明,蜂胶的化学成分与杨树芽的70EE之间具有相关性。就EO而言,结果尚不清楚。与70EE相比,黑杨,白杨EO和蜂胶的成分具有更大的变异性。造成这些现象的原因可能有多种,例如与70EE相比,EO的不稳定性更高,苄基酯对苯甲酸的降解方式不同,植物代谢的差异以及蜜蜂的偏好。因此,我们的研究表明,蜂胶70EE反映了黑假单胞菌或复杂的白杨-黑杨树起源的成分。

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