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大麦和燕麦中大规模提取β-葡聚糖的分子结构:高β-葡聚糖大麦突变体中明显改变的块结构的鉴定。

Molecular structure of large-scale extracted β-glucan from barley and oat: Identification of a significantly changed block structure in a high β-glucan barley mutant.

机构信息

Department of Food Science, University of Copenhagen, Frederiksberg C, Denmark.

出版信息

Food Chem. 2013 Jan 1;136(1):130-8. doi: 10.1016/j.foodchem.2012.07.097. Epub 2012 Aug 1.

Abstract

Health effects of β-glucan are typically related to dose, size and viscosity without taking the specific molecular structure into account. High β-glucan mutant barley, mother barley and oat β-glucans were large-scale extracted by comparable protocols using hot water, enzyme assisted hydrolysis and ethanol precipitation leading to similar molecular masses (200-300kDa). Multivariate data analysis on all compositional, structural and functional features demonstrated that the main variance among the samples was primarily explained by block structural differences as determined by HPSEC-PAD. In particular the barley high β-glucan mutant proved to exhibit a unique block structure with DP3 and DP4 contributions of: 78.9% and 16.7% as compared to the barley mother (72.1% and 21.4%) and oat (66.1% and 29.1%). This unique block structure was further confirmed by the (1)H NMR determination of the β-1,4 to β-1,3 linkage ratio. Low solubility of the barley samples was potentially an effect of substructures consisting of longer repetitive cellotriosyl sequences. FT-Raman and NMR spectroscopy were useful in measuring sample impurities of α-glucans and prediction of β-linkage characteristics.

摘要

β-葡聚糖的健康影响通常与剂量、大小和粘性有关,而不考虑其特定的分子结构。采用类似的方案,使用热水、酶辅助水解和乙醇沉淀大规模提取了高β-葡聚糖突变大麦、母大麦和燕麦β-葡聚糖,得到了相似的分子量(200-300kDa)。对所有成分、结构和功能特征的多变量数据分析表明,样品之间的主要差异主要由 HPSEC-PAD 确定的块结构差异解释。特别是,与大麦母本(72.1%和 21.4%)和燕麦(66.1%和 29.1%)相比,高β-葡聚糖突变大麦表现出独特的块结构,DP3 和 DP4 的贡献分别为:78.9%和 16.7%。通过(1)H NMR 确定β-1,4 至β-1,3 键的比例,进一步证实了这种独特的块结构。大麦样品的低溶解度可能是由更长的重复纤维三糖序列组成的亚结构引起的。FT-Raman 和 NMR 光谱可用于测量α-葡聚糖的样品杂质并预测β-键合特性。

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