首页> 外文OA文献 >Detection of Kestoses and Kestose-Related Oligosaccharides in Extracts of Festuca arundinacea, Dactylis glomerata L., and Asparagus officinalis L. Root Cultures and Invertase by 13C and 1H Nuclear Magnetic Resonance Spectroscopy 1
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Detection of Kestoses and Kestose-Related Oligosaccharides in Extracts of Festuca arundinacea, Dactylis glomerata L., and Asparagus officinalis L. Root Cultures and Invertase by 13C and 1H Nuclear Magnetic Resonance Spectroscopy 1

机译:用13C和1H核磁共振波谱法检测金银花,小球藻和芦笋的根中的蔗糖和与蔗糖相关的寡糖。根培养和转化酶1

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摘要

A previous study (KL Forsythe, MS Feather [1989] Carbohydr Res 185: 315-319) showed that 13C nuclear magnetic resonance spectroscopy can be used to detect and identify mixtures of 1-kestose and neokestose after conversion to the acetate derivatives. In this study, unequivocal assignments are made for the anomeric carbon and proton signals for the above two trisaccharide acetates as well as for 6-kestose hendecaacetate and for nystose tetradecaacetate (a 1-kestose-derived tetrasaccharide). A number of oligosaccharide fractions were isolated from several plant species, converted to the acetates, and nuclear magnetic resonance spectra obtained. Using the above reference data, the following information was obtained. The trisaccharide fraction from Dactylis glomerata L. stem tissue and Asparagus officinalis L. roots contain both 1-kestose and neokestose, and the tetrasaccharide fractions contain three components, one of which is nystose. Penta- and hexasaccharide acetates were also isolated from A. officinalis L. roots and were found to contain, respectively, four and at least five components. All components of both of the above species appear to contain a kestose residue and to be produced by the sequential addition of fructofuranosyl units to these. The trisaccharide fraction from Festuca arundinacea is complex, and contains at least five different components, two of which appear to be 1-kestose and neokestose.
机译:先前的研究(KL Forsythe,MS Feather [1989] Carbohydr Res 185:315-319)表明,在转化为乙酸酯衍生物后,13 C核磁共振波谱可用于检测和鉴定1-核糖和新核糖的混合物。在这项研究中,对上述两种三糖乙酸酯,6-十二烷基十一乙酸酯和Nystose十四癸乙酸酯(1-Kest​​ose衍生的四糖)的异头碳和质子信号进行了明确分配。从几种植物中分离出许多寡糖馏分,将其转化为乙酸盐,并获得了核磁共振谱。使用以上参考数据,获得了以下信息。 Dactylis glomerata L.茎组织和Asparagus officinalis L.根中的三糖部分同时含有1-kestose和neokestose,而四糖部分则含有3种成分,其中之一是猪瘟。五糖和六糖乙酸盐也从A. officinalis L.根中分离出来,发现分别含有四个和至少五个成分。上述两个物种的所有组分似乎都含有一个蔗糖残基,并且是通过向这些残基中依次添加果糖呋喃糖基单元而产生的。 Festuca arundinacea的三糖级分很复杂,并且至少包含五个不同的成分,其中两个似乎是1-kestose和neokestose。

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