Literature DB >> 10772266

13C CPMAS studies of plant cell wall materials and model systems using proton relaxation-induced spectral editing techniques.

H R Tang1, Y L Wang, P S Belton.   

Abstract

The solid state 13C CPMAS NMR spectra of plant cell walls are often complex owing to superposition of resonances from different polysaccharides and the heterogeneity of the cell wall assembly. In this paper, we describe the application of a set of proton relaxation-induced spectral editing (PRISE) experiments which combine 1H relaxation properties (T1, T1rho, T2) with 13C high resolution spectroscopy (CPMAS) to relate the dynamics of the plant cell walls and model systems to their domain structural details. With PRISE it has been found that in plant cell wall materials, cellulose is always associated with the long components of spin-lattice relaxation in both the laboratory and rotating frames whereas non-cellulose polysaccharides (pectin and hemicellulose) are associated with the short ones. For the proton T2 relaxation, cellulose is only associated with the short component (below 20 micros), pectin contributes to both the short component and the long one.

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Year:  2000        PMID: 10772266     DOI: 10.1016/s0926-2040(99)00064-8

Source DB:  PubMed          Journal:  Solid State Nucl Magn Reson        ISSN: 0926-2040            Impact factor:   2.293


  3 in total

Review 1.  The magic angle view to food: magic-angle spinning (MAS) NMR spectroscopy in food science.

Authors:  Henrik Max Jensen; Hanne Christine Bertram
Journal:  Metabolomics       Date:  2019-03-13       Impact factor: 4.290

Review 2.  Hidden motions and motion-induced invisibility: Dynamics-based spectral editing in solid-state NMR.

Authors:  Irina Matlahov; Patrick C A van der Wel
Journal:  Methods       Date:  2018-04-24       Impact factor: 3.608

3.  Isolation and characterization of two cellulose morphology mutants of Gluconacetobacter hansenii ATCC23769 producing cellulose with lower crystallinity.

Authors:  Ying Deng; Nivedita Nagachar; Lin Fang; Xin Luan; Jeffrey M Catchmark; Ming Tien; Teh-hui Kao
Journal:  PLoS One       Date:  2015-03-19       Impact factor: 3.240

  3 in total

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