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1.
The olive tree (Olea europaea L., Oleaceae) is one of the most important fruit trees in Mediterranean basin and has been associated with numerous biological assets. These effects have been mainly attributed to certain phenolic compounds found in fruits, olive oil and by-products of olive oil production. However, other Olea organs such as stems, roots and drupe stones have received little attention leading to limited knowledge about their phytochemical content. Thus, the main goal of the current study was the investigation of the chemical composition of diverse organs from two O. europaea varieties (i.e. Koroneiki and Chetoui) using combinations of modern analytical techniques. A fast UHPLC-DAD-FLD method was developed and applied for the profiling of different extracts of O. europaea organs as well as for the quantification of oleuropein. In addition, a dereplication strategy was developed using an Orbitrap platform (UHPLC-ESI-HRMS/MS) aiming to further characterization of the contained secondary metabolites. In total, 86 molecules were identified including compounds described for the first time in O. europaea such as coumarins. Some compounds were found to be organ specific such as nuzhenide derivatives in stone, flavonoids in leaves and oleuropein which was mainly found in Olea roots, in both varieties. Overall, it is noticeable that except olive oil, diverse organs of olive tree might comprise an alternative and valuable source of biologically active compounds.  相似文献   
2.
Shoots of Centaurium erythraea Rafn were cultivated in 5 l mist trickling bioreactor for 21 and 28 days increasing their dry weight from 0.54 g to 13.7 g and 18.3 g, respectively. About 6880 shoots from 223 initial shoot-tips in 21-day bioreactor producing cycle were produced. The shoots could be successfully rooted and transferred to soil. Secoiridoid accumulation (expressed as a sum of gentiopicroside, sweroside and swertiamarin) in shoots after 21 days of culture reached about 303 mg l−1.  相似文献   
3.
Three new secoiridoid glucosides, eustomoside, eustoside and eustomorusside, have been isolated along with three known glucosides, sweroside, swertiamarin and gentiopicroside, as well as one unknown glycoside from Eustoma russellianum.  相似文献   
4.
Besides the known glucoside jasminin and an unidentified glucoside, two new secoiridoid glucosides,jasmoside and jasmesoside have been isolated from the leaves of Jasminum mesnyi and their structures elucidated.  相似文献   
5.
Twp new secoiridoid glucosides, abeliosides A and B, were isolated along with cantleyoside and sylvestroside II from Abelia grandiflora. On the basis of spectral and chemical evidence, these new glucosides were identified as esters of secologanic acid with an iridoid lactone which may arise from loganin. Cantleyoside was also isolated from A. spathulata and A. serrata.  相似文献   
6.
Two new lignan glucosides, (+)-1-acetoxypinoresinol 4″-methyl ether 4′-β-d-glucoside and (+)-1-hydroxypinoresinol 4′-β-d-glucoside, together with three known glucosides, (+)-1-acetoxypinoresinol 4′-β-d-glucoside, esculin and oleuropein, were isolated from the bark of Olea europaea subs africana.  相似文献   
7.
Three new secoiridoid glucosides, ligustaloside A, ligustaloside B and 10-hydroxyoleuropein, along with two known glucosides, oleuropein and ligstrosid  相似文献   
8.
A new natural socoiridoid, kingiside aglucone, was isolated from unripe fruits of Strychnos spinosa. Its presence together with indole alkaloids, previously isolated from other parts of the plant, is of biogenetic interest.  相似文献   
9.
From the methanol extract of boron deficient Olea europaea leaves, two secoiridoid glycosides, not detected in leaf extracts of untreated plants, 6′-E-p-coumaroyl-secologanoside and 6′-O-[(2E)-2,6-dimethyl-8-hydroxy-2-octenoyloxy]-secologanoside, were isolated together with three known secoiridoid glycosides, oleuropein, oleoside dimethyl ester, and secologanoside. The structures of the isolated compounds were established by means of NMR and MS spectral analyses. The above novel secoiridoids were synthesized by the plant as a physiological response to nutrient stress.  相似文献   
10.
从欧橄榄(Olea europaeaL.)干燥叶的乙酸乙酯部位分离得到5个裂环烯醚萜类化合物。通过波谱分析和理化常数对照等方法,上述化合物分别鉴定为6′-O-甲基橄榄苦苷(6′-O-methyloleuropein,1)、橄榄苦苷(oleu-ropein,2)、(1S)-methylelenolate(3)、3,4-二羟基苯乙基-4-甲酰基-3-甲酰甲基-4-己烯酯(4)和oleoside(5)。其中化合物1为新化合物。  相似文献   
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