| Literature DB >> 30960841 |
Wu Lan1,2,3, Fengxia Yue4,5,6, Jorge Rencoret7, José Carlos Del Río8, Wout Boerjan9,10, Fachuang Lu11,12,13, John Ralph14,15.
Abstract
Tricin [5,7-dihydroxy-2-(4-hydroxy-3,5-dimethoxyphenyl)-4H-chromen-4-one] is a flavone that has been found to be incorporated in grass lignin polymers via 4'⁻O⁻β coupling. Herein, we investigated the tricin-lignin structure using nuclear magnetic resonance (NMR) methods by comparing the 1H⁻13C heteronuclear correlation (HSQC) NMR spectra of the isolated lignin with a series of dimeric and trimeric tricin-4'⁻O⁻β-ether model compounds. Results showed that the tricin moiety significantly affects the chemical shift of the Cβ/Hβ of 4'⁻O⁻β unit, producing peaks at around δC/δH 82.5⁻83.5/4.15⁻4.45, that differ from the Cβ/Hβ correlations from normal 4⁻O⁻β units formed solely by monolignols, and that have to date been unassigned.Entities:
Keywords: HSQC; lignin; model compound; monocot; nuclear magnetic resonance (NMR); tricin
Year: 2018 PMID: 30960841 PMCID: PMC6403598 DOI: 10.3390/polym10080916
Source DB: PubMed Journal: Polymers (Basel) ISSN: 2073-4360 Impact factor: 4.329
Figure 11H–13C heteronuclear correlation (HSQC) spectra of acetylated (a) and non-acetylated (b) milled wood lignin of wheat straw overlaid with the nuclear magnetic resonance (NMR) data from four tricin-containing model compounds.
Chemical shift of the Cβ/Hβ and Cβ″/Hβ″ of the non-acetylated model compounds.
| Title 1 | Cβ/Hβ | Cβ″/Hβ″ |
|---|---|---|
| 1. T-(4′–O–β)-G | 86.94/4.24 | - |
| 86.38/4.34 | ||
| 2. T-(4′–O–β)-S | 86.63/4.27 | - |
| 86.36/4.36 | ||
| 3. 4–O-methylated T-(4′–O–β)-G | 86.74/4.39 | - |
| 86.21/4.49 | ||
| 4. T-(4′–O–β)-S-(4–O–β″)-G | 86.11/4.31 | 87.01/3.91 |
| 86.04/4.38 | 85.85/4.03 |
Figure 2HSQC spectra of enzymatic lignin from control (a) and chalcone synthase (CHS) mutant (b) maize leaf.