Determining Lignin Degradation in White-Rot Fungi-Treated Sacrau Poplar: Lignin Structural Changes and Degradation Compound Analysis
Determining the structural changes of lignin during bio-treatment will facilitate the understanding of biomass recalcitrance during the sustainable production of chemicals and fuels. However, the analysis of milled wood lignin (MWL) cannot completely elucidate the complex and irregular structural ch...
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North Carolina State University
2016-03-01
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doaj-115d8f6e28784a78ab464e3b31b3ad2d2020-11-24T22:18:08ZengNorth Carolina State UniversityBioResources1930-21261930-21262016-03-011123972398610.15376/biores.11.2.3972-3986Determining Lignin Degradation in White-Rot Fungi-Treated Sacrau Poplar: Lignin Structural Changes and Degradation Compound AnalysisLiming Zhang0Tingting You1Tian Zhou2Lu Zhang3Feng Xu4Beijing Forestry University; ChinaBeijing Key Laboratory of Lignocellulosic Chemistry, Beijing Forestry University, Beijing, 100083, China; ChinaBeijing Key Laboratory of Lignocellulosic Chemistry, Beijing Forestry University, Beijing, 100083, China; ChinaBeijing Key Laboratory of Lignocellulosic Chemistry, Beijing Forestry University, Beijing, 100083, China; ChinaBeijing Key Laboratory of Lignocellulosic Chemistry, Beijing Forestry University, Beijing, 100083, China; ChinaDetermining the structural changes of lignin during bio-treatment will facilitate the understanding of biomass recalcitrance during the sustainable production of chemicals and fuels. However, the analysis of milled wood lignin (MWL) cannot completely elucidate the complex and irregular structural changes therein. In this study, MWL and lignin degradation compounds were extracted from white-rot fungi-treated poplar in order to unveil the degradation process. Results from MWL revealed that the cleavage of β-O-4′ linkages (from 76.4/100Ar to 31.5/100Ar) and the degradation of β–β′ and β-5′ linkages clearly occurred, resulting in a decrease in molecular weight. In addition, G-type lignin was more degraded than S-type lignin, with a slightly elevated S/G ratio from 1.13 to 1.29. Further analyses of lignin degradation compounds confirmed these results by showing a high amount of conjugated and unconjugated C=O functionalities. Furthermore, the degradation product of G-type lignin (vanillin) was detected by 2D HSQC NMR and GC-MS. This study of lignin alterations during white-rot fungi treatment could be beneficial for the sustainable production of chemicals, materials, and fuels from renewable plant resources.http://ojs.cnr.ncsu.edu/index.php/BioRes/article/view/BioRes_11_2_3972_Zhang_Lignin_Degradation_White_Rot_Fungi_PoplarWhite-rot fungiLigninEnzyme activity2D HSQC NMRDegradation compounds |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Liming Zhang Tingting You Tian Zhou Lu Zhang Feng Xu |
spellingShingle |
Liming Zhang Tingting You Tian Zhou Lu Zhang Feng Xu Determining Lignin Degradation in White-Rot Fungi-Treated Sacrau Poplar: Lignin Structural Changes and Degradation Compound Analysis BioResources White-rot fungi Lignin Enzyme activity 2D HSQC NMR Degradation compounds |
author_facet |
Liming Zhang Tingting You Tian Zhou Lu Zhang Feng Xu |
author_sort |
Liming Zhang |
title |
Determining Lignin Degradation in White-Rot Fungi-Treated Sacrau Poplar: Lignin Structural Changes and Degradation Compound Analysis |
title_short |
Determining Lignin Degradation in White-Rot Fungi-Treated Sacrau Poplar: Lignin Structural Changes and Degradation Compound Analysis |
title_full |
Determining Lignin Degradation in White-Rot Fungi-Treated Sacrau Poplar: Lignin Structural Changes and Degradation Compound Analysis |
title_fullStr |
Determining Lignin Degradation in White-Rot Fungi-Treated Sacrau Poplar: Lignin Structural Changes and Degradation Compound Analysis |
title_full_unstemmed |
Determining Lignin Degradation in White-Rot Fungi-Treated Sacrau Poplar: Lignin Structural Changes and Degradation Compound Analysis |
title_sort |
determining lignin degradation in white-rot fungi-treated sacrau poplar: lignin structural changes and degradation compound analysis |
publisher |
North Carolina State University |
series |
BioResources |
issn |
1930-2126 1930-2126 |
publishDate |
2016-03-01 |
description |
Determining the structural changes of lignin during bio-treatment will facilitate the understanding of biomass recalcitrance during the sustainable production of chemicals and fuels. However, the analysis of milled wood lignin (MWL) cannot completely elucidate the complex and irregular structural changes therein. In this study, MWL and lignin degradation compounds were extracted from white-rot fungi-treated poplar in order to unveil the degradation process. Results from MWL revealed that the cleavage of β-O-4′ linkages (from 76.4/100Ar to 31.5/100Ar) and the degradation of β–β′ and β-5′ linkages clearly occurred, resulting in a decrease in molecular weight. In addition, G-type lignin was more degraded than S-type lignin, with a slightly elevated S/G ratio from 1.13 to 1.29. Further analyses of lignin degradation compounds confirmed these results by showing a high amount of conjugated and unconjugated C=O functionalities. Furthermore, the degradation product of G-type lignin (vanillin) was detected by 2D HSQC NMR and GC-MS. This study of lignin alterations during white-rot fungi treatment could be beneficial for the sustainable production of chemicals, materials, and fuels from renewable plant resources. |
topic |
White-rot fungi Lignin Enzyme activity 2D HSQC NMR Degradation compounds |
url |
http://ojs.cnr.ncsu.edu/index.php/BioRes/article/view/BioRes_11_2_3972_Zhang_Lignin_Degradation_White_Rot_Fungi_Poplar |
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