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13C MAS NMR studies of the effects of hydration on the cell walls of potatoes and Chinese water chestnuts.

机译:13 C MAS NMR研究水合作用对马铃薯和water的细胞壁的影响。

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13C NMR with magic angle spinning (MAS) has been employed to investigate the cell walls of potatoes and Chinese water chestnuts over a range of hydration levels. Both single-pulse excitation (SPEMAS) and cross-polarization (CPMAS) experiments were carried out. Hydration led to a substantial increase in signal intensities of galactan and galacturonan in the SPEMAS spectra and a decrease in line width, implying mobilization in the backbone and side chains of pectin. In CPMAS spectra of both samples, noncellulose components showed signal loss as hydration increased. However, the signals of some galacturonan in the 3(1) helix configuration remained in the spectra even when the water content was as high as 110%. Cellulose was unaffected. It is concluded that the pectic polysaccharides experience a distribution of molecular conformations and mobility, whereas cellulose remained as typical rigid solid.
机译:13C NMR和魔角旋转(MAS)技术已被用于研究在一定水合水平下马铃薯和water的细胞壁。进行了单脉冲激发(SPEMAS)和交叉极化(CPMAS)实验。水化作用导致SPEMAS光谱中半乳聚糖和半乳糖醛酸的信号强度显着增加,线宽减小,这意味着果胶的主链和侧链动员。在两个样品的CPMAS光谱中,随着水合度的增加,非纤维素成分均显示出信号损失。但是,即使水分含量高达110%,某些半乳糖醛酸3(1)螺旋构型的信号仍保留在光谱中。纤维素不受影响。结论是,果胶多糖经历分子构象和迁移率的分布,而纤维素仍然是典型的刚性固体。

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