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Direct Evidence for α Ether Linkage Between Lignin and Carbohydrates in Wood Cell Walls

Overview
Journal Sci Rep
Specialty Science
Date 2018 Apr 27
PMID 29695732
Citations 52
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Abstract

Cross-linking between lignin and polysaccharide in plant cell-wall determines physical, chemical, and biological features of lignocellulosic biomass. Since Erdmann's first report in 1866, numerous studies have suggested the presence of a bond between hemicelluloses and lignin; however, no clear evidence for this interaction has been reported. We describe the first direct proof of covalent bonding between plant cell-wall polysaccharides and lignin. Nuclear magnetic resonance spectroscopy was used to observe the long-range correlations through an α-ether bond between lignin and the primary hydroxyl group of a mannose residue in glucomannan. Complete signal assignment of the cognate structural units was also achieved. Thus, we identified lignin-carbohydrate bonds by complete connectivity analysis from the phenylpropane unit to the carbohydrate moiety.

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References
1.
Du X, Perez-Boada M, Fernandez C, Rencoret J, Del Rio J, Jimenez-Barbero J . Analysis of lignin-carbohydrate and lignin-lignin linkages after hydrolase treatment of xylan-lignin, glucomannan-lignin and glucan-lignin complexes from spruce wood. Planta. 2014; 239(5):1079-90. DOI: 10.1007/s00425-014-2037-y. View

2.
Balakshin M, Capanema E, Gracz H, Chang H, Jameel H . Quantification of lignin-carbohydrate linkages with high-resolution NMR spectroscopy. Planta. 2011; 233(6):1097-110. DOI: 10.1007/s00425-011-1359-2. View

3.
Lawoko M, Henriksson G, Gellerstedt G . Structural differences between the lignin-carbohydrate complexes present in wood and in chemical pulps. Biomacromolecules. 2005; 6(6):3467-73. DOI: 10.1021/bm058014q. View

4.
Du X, Gellerstedt G, Li J . Universal fractionation of lignin-carbohydrate complexes (LCCs) from lignocellulosic biomass: an example using spruce wood. Plant J. 2013; 74(2):328-38. PMC: 4091893. DOI: 10.1111/tpj.12124. View

5.
Yuan T, Sun S, Xu F, Sun R . Characterization of lignin structures and lignin-carbohydrate complex (LCC) linkages by quantitative 13C and 2D HSQC NMR spectroscopy. J Agric Food Chem. 2011; 59(19):10604-14. DOI: 10.1021/jf2031549. View