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13C cell wall enrichment and ionic liquid NMR analysis: progress towards a high-throughput detailed chemical analysis of the whole plant cell wall

doi: 10.1039/c2an35344j
pmid: 22768393
The ability to accurately and rapidly measure plant cell wall composition, relative monolignol content and lignin-hemicellulose inter-unit linkage distributions has become essential to efforts centered on reducing the recalcitrance of biomass by genetic engineering. Growing (13)C enriched transgenic plants is a viable route to achieve the high-throughput, detailed chemical analysis of whole plant cell wall before and after pretreatment and microbial or enzymatic utilization by (13)C nuclear magnetic resonance (NMR) in a perdeuterated ionic liquid solvent system not requiring component isolation. 1D (13)C whole cell wall ionic liquid NMR of natural abundant and (13)C enriched corn stover stem samples suggest that a high level of uniform labeling (>97%) can significantly reduce the total NMR experiment times up to ~220 times. Similarly, significant reduction in total NMR experiment time (~39 times) of the (13)C enriched corn stover stem samples for 2D (13)C-(1)H heteronuclear single quantum coherence NMR was found.
- Georgia Institute of Technology United States
- Georgia Institute of Technology United States
Carbon Isotopes, Magnetic Resonance Spectroscopy, Ionic Liquids, Lignin, Cell Wall, Polysaccharides, Plant Cells, Quantum Theory, Biomass
Carbon Isotopes, Magnetic Resonance Spectroscopy, Ionic Liquids, Lignin, Cell Wall, Polysaccharides, Plant Cells, Quantum Theory, Biomass
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