Additional file 8: Figure S4. HSQC NMR spectra of fungal-treated wheat straw. Cs12 (a, b), Pe3 (c, d), Pe6 (e, f) Le8 (g, h) Le10 (i, j). a, c, e, g, i: Aliphatic (δC/δH 50–90/2.5–6.0) region, b, d, f, h, j: aromatic/unsaturated (δC/δH 90–160/6.0–8.0) region. Structures of annotated correlation peaks are presented in Fig. 5. Gmod and Smod are presented in a lighter color of G and S, respectively. Carbohydrate and unassigned signals are presented in gray. u: unassigned signal overlapping Aα/A′α
Wheat straw degradation by Fibrobacter succinogenes was monitored by nuclear magnetic resonance (NMR...
The structural modifications occurring during wheat straw lignin biodegradation were evaluated b...
By combining mild alkaline hydrolysis with quantitative 31P NMR we have been able to arrive at a pro...
Additional file 6: Figure S3. Structural changes of fungal-treated wheat straw lignin during fungal ...
Additional file 4: Figure S1. Residual lignin, glucuronoarabinoxylan (GAX) and glucan (cellulose) in...
Additional file 3: Table S2. Lignin content and removal determined by semi-quantitative and quantita...
Additional file 2: Table S1. Identity, structural classification and relative abundance of lignin-de...
Additional file 5: Figure S2. EI–MS (70 eV) spectra and structures of vanilloyl acetaldehyde (VAL) a...
Additional file 1. Formulae for calculation of lignin content and relative abundance by 13C-IS py-GC...
Background The white-rot fungi Ceriporiopsis subvermispora (Cs), Pleurotus eryngii (Pe), and Lentinu...
The white-rot fungi Ceriporiopsis subvermispora (Cs), Pleurotus eryngii (Pe), and Lentinula edodes (...
The white-rot fungus Ceriporiopsis subvermispora delignifies plant biomass extensively and selective...
*S Supporting Information ABSTRACT: The structure of the lignin in wheat straw has been investigated...
Cellulose and wheat straw degradation by Ruminococcus albus was monitored using NMR spectroscopy. In...
Solid-state 13C nuclear magnetic resonance (NMR) and elemental analysis techniques were used to moni...
Wheat straw degradation by Fibrobacter succinogenes was monitored by nuclear magnetic resonance (NMR...
The structural modifications occurring during wheat straw lignin biodegradation were evaluated b...
By combining mild alkaline hydrolysis with quantitative 31P NMR we have been able to arrive at a pro...
Additional file 6: Figure S3. Structural changes of fungal-treated wheat straw lignin during fungal ...
Additional file 4: Figure S1. Residual lignin, glucuronoarabinoxylan (GAX) and glucan (cellulose) in...
Additional file 3: Table S2. Lignin content and removal determined by semi-quantitative and quantita...
Additional file 2: Table S1. Identity, structural classification and relative abundance of lignin-de...
Additional file 5: Figure S2. EI–MS (70 eV) spectra and structures of vanilloyl acetaldehyde (VAL) a...
Additional file 1. Formulae for calculation of lignin content and relative abundance by 13C-IS py-GC...
Background The white-rot fungi Ceriporiopsis subvermispora (Cs), Pleurotus eryngii (Pe), and Lentinu...
The white-rot fungi Ceriporiopsis subvermispora (Cs), Pleurotus eryngii (Pe), and Lentinula edodes (...
The white-rot fungus Ceriporiopsis subvermispora delignifies plant biomass extensively and selective...
*S Supporting Information ABSTRACT: The structure of the lignin in wheat straw has been investigated...
Cellulose and wheat straw degradation by Ruminococcus albus was monitored using NMR spectroscopy. In...
Solid-state 13C nuclear magnetic resonance (NMR) and elemental analysis techniques were used to moni...
Wheat straw degradation by Fibrobacter succinogenes was monitored by nuclear magnetic resonance (NMR...
The structural modifications occurring during wheat straw lignin biodegradation were evaluated b...
By combining mild alkaline hydrolysis with quantitative 31P NMR we have been able to arrive at a pro...