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Seasonal Effect on the Chemical Composition Insecticidal Properties and Other Biological Activities of Zanthoxylum leprieurii Guill. Perr. Essential Oils

机译:对花椒花椒化学成分杀虫特性和其他生物活性的季节性影响。 &Perr。精油

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摘要

This study focused, for the first time, on the evaluation of the seasonal effect on the chemical composition and biological activities of essential oils hydrodistillated from leaves, trunk bark and fruits of ( ), a traditional medicinal wild plant growing in Côte d’Ivoire. The essential oils were obtained by hydrodistillation from fresh organs of growing on the same site over several months using a Clevenger-type apparatus and analyzed by gas chromatography-mass spectrometry (GC/MS). Leaf essential oils were dominated by tridecan-2-one (9.00 ± 0.02–36.80 ± 0.06%), ( )-β-ocimene (1.30 ± 0.50–23.57 ± 0.47%), β-caryophyllene (7.00 ± 1.02–19.85 ± 0.48%), dendrolasin (1.79 ± 0.08–16.40 ± 0.85%) and undecan-2-one (1.20 ± 0.03–8.51 ± 0.35%). Fruit essential oils were rich in β-myrcene (16.40 ± 0.91–48.27 ± 0.26%), citronellol (1.90 ± 0.02–28.24 ± 0.10%) and geranial (5.30 ± 0.53–12.50 ± 0.47%). Tridecan-2-one (45.26 ± 0.96–78.80 ± 0.55%), β-caryophyllene (1.80 ± 0.23–13.20 ± 0.33%), α-humulene (4.30 ± 1.09–12.73 ± 1.41%) and tridecan-2-ol (2.23 ± 0.17–10.10 ± 0.61%) were identified as major components of trunk bark oils. Statistical analyses of essential oil compositions showed that the variability mainly comes from the organs. Indeed, principal component analysis (PCA) and hierarchical cluster analysis (HCA) allowed us to cluster the samples into three groups, each one consisting of one different organ, showing that essential oils hydrodistillated from the different organs do not display the same chemical composition. However, significant differences in essential oil compositions for the same organ were highlighted during the studied period, showing the impact of the seasonal effect on essential oil compositions. Biological activities of the produced essential oils were also investigated. Essential oils exhibited high insecticidal activities against , as well as antioxidant, anti-inflammatory and moderate anti-plasmodial properties.
机译:这项研究首次侧重于评估对科特迪瓦生长的传统药用野生植物()的叶子,树干和果实进行水蒸馏而得的精油的化学成分和生物活性的季节性影响。精油是通过使用Clevenger型仪器经过数月在同一地点生长的新鲜器官的加氢蒸馏而获得的,并通过气相色谱-质谱(GC / MS)进行分析。叶精油主要由tridecan-2-one(9.00±0.02–36.80±0.06%),()-β-ocimene(1.30±0.50–23.57±0.47%),β-石竹烯(7.00±1.02–19.85±0.48)为主%),树胶蛋白(1.79±0.08–16.40±0.85%)和十一烷-2-酮(1.20±0.03–8.51±0.35%)。水果精油富含β-月桂烯(16.40±0.91–48.27±0.26%),香茅酚(1.90±0.02–28.24±0.10%)和香叶醛(5.30±0.53–12.50±0.47%)。 Tridecan-2-one(45.26±0.96–78.80±0.55%),β-石竹烯(1.80±0.23–13.20±0.33%),α-腐殖烯(4.30±1.09–12.73±1.41%)和tridecan-2-ol( 2.23±0.17–10.10±0.61%)被确定为树干树皮油的主要成分。精油成分的统计分析表明,变异性主要来自器官。实际上,通过主成分分析(PCA)和层次聚类分析(HCA),我们可以将样品分为三类,每组由一个不同的器官组成,这表明从不同器官加氢蒸馏得到的精油没有显示相同的化学组成。但是,在研究期间,同一器官的精油成分存在显着差异,这表明季节性因素对精油成分的影响。还研究了所生产的精油的生物活性。香精油显示出对的高杀虫活性,以及​​抗氧化剂,抗炎和适度的抗疟原虫特性。

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