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From the aerial parts of Zygophyllum fabago, two new monosodium salts of sulfated derivatives of ursolic acid, along with two known quinovic acid glycosides were isolated. The structures of the new compounds were determined as (3β,4α)‐3,23,30‐trihydroxyurs‐20‐en‐28‐al 3,23‐di(sulfate) sodium salt (1 : 1) ( 1 ) and of (3β,4α)‐3,23,28‐trihydroxyurs‐20‐en‐30‐yl β‐D ‐glucopyranoside 3,23‐di(sulfate) sodium salt (1 : 1) ( 2 ) with the molecular formula C30H47NaO10S2 and C36H59NaO15S2, respectively. The structures of the known compounds were 3‐O‐(2‐O‐sulfo‐β‐D ‐quinovopyranosyl)quinovic acid 28‐β‐D ‐glucopyranosyl ester ( 3 ) and 3‐O‐(β‐D ‐glucopyranosyl)quinovic acid 28‐β‐D ‐glucopyranosyl ester ( 4 ) (quinovic acid=(3β)‐3‐hydroxyurs‐12‐ene‐27,28‐dioic acid). The structures of all these compounds were determined by using 1D‐ and 2D‐NMR spectroscopic techniques.  相似文献   
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In this research, total and free daidzein content in Genista species growing in Turkey were investigated using the LC-MS method. The highest amount of total and free daidzein in these species was found in Genista sessilifolia and G. lydia var. antiochia as 0.0056 and 0.0009%, respectively. Total and free daidzein content of the aerial parts of other Genista species varied from 0.0003 to 0.0044%, and from 0.0001 to 0.0008%, respectively. Published in Khimiya Prirodnykh Soedinenii, No. 5, pp. 417–418, September–October, 2006.  相似文献   
3.
INTRODUCTION

As discussed in a recent preliminary publication1, the complex [Ru(η4-C8H12){η-P3C2But 2CH(SiMe3)2}] (1) (C8H12 = cycloocta-l,5-diene) was prepared by the reaction of [Ru(η6-C10H8)(η4-C8H12)] (2) (C10H8 = naphthalene) with the 1,2,4-triphosphole P3C2But 2CH(SiMe3)2 (3) (Fig. 1), illustrating the aromatic behaviour of (3).  相似文献   
4.
The steam volatiles obtained from the fresh and dried needles of Taxus baccata (Taxaceae), collected from Turkey after enzymatic hydrolysis, were analyzed by GC/MS. Sixty-three compounds representing 88.6% of the oil obtained from the fresh needles were identified. Hexadecanoic acid (19.6%) and decanoic acid (19.5%) were the most abundant components in these oils. Sixty-five components representing 86.6% of the oil from the dried needles were characterized, with hexadecanoic acid (22.5%) and decanoic acid (12.6%) being the major components.  相似文献   
5.
A new flavonoid, kaempferol-3,4′-di-O-α-L-rhamnopyranoside (1), and three known flavonoids (2–4) were isolated from the aerial parts of T. communis L. The structure of the new compound was elucidated on the basis of spectroscopic data. Compounds 1 and 2 showed significant antioxidant activity (IC50 187.151 ± 0.821 μM, and 92.079±0.513 μM, respectively), whereas compounds 3 and 4 showed moderate activity in DPPH free radical scavenging assays. Published in Khimiya Prirodnykh Soedinenii, No. 3, pp. 295–297, May–June, 2009.  相似文献   
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Chromatographic separation of chloroform extracts of the heartwood of Taxus baccata L. has yielded two new dibenzylbutane type lignans, together with a known lignan. Their structures were established as 3′-demethylisolariciresinol-9′-hydroxy isopropylether (1) and 3-demethylisolariciresinol (2) and isolariciresinol (3) on the basis of 1D- and 2D-NMR spectroscopic analysis. Compounds 1 and 2 were identified as new lignans of isolariciresinol derivatives. Compound 1 is the first lignan with a hydroxyisopropyl group at C-9′. Molecular mechanic calculations of these compounds were carried out by using mm3 program. Furthermore, the conformations of these three compounds were computed with the semi-empirical molecular orbital methods AM1 and PM3 by using X-ray crystal structure results of similar compounds. So, three-dimensional, the most probable structure of these compounds were obtained, compared and discussed.  相似文献   
8.
The effect of irrigation on the seed yield, oil yield, and oil composition of sunflower in populations of Ekiz1 and VNIIMK 8931, a mixture of N2, N3, and N4 lines, and a synthetic variety obtained from these lines has been studied. The major fatty acid was found to be oleic acid, in addition to linoleic, palmitic, and stearic acids. Irrigation increased seed yield, oil yield, and oil content of all samples. In two of them, the synthetic variety and VNIIMK 8931, the increase was found to be statistically significant. In addition, irrigation of the samples did not increase significantly the amount of oleic and linoleic acids. On the contrary, the amount of linoleic acid in the mixture of N2, N3, and N4 lines and oleic acid in VNIIMK 8931 decreased statistically significantly.  相似文献   
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