The efficient conversion of biomass into biofuels is closely associated with the topochemistry of the cell wall. In this study, the topochemical correlation between carbohydrates and lignin in the Eucommia ulmoides cell wall was investigated in situ by confocal Raman microscopy. The carbohydrates and lignin were mainly collocated in the secondary wall of the fiber, ray parenchyma, and vessel in E. ulmoides. High carbohydrates were associated with low lignin or vice versa, indicating that a high concentration of carbohydrates leads to a drop in the degree of lignification. Furthermore, the band intensity ratio of S- and G-lignin to carbohydrates (I1333/I2889 and I1274/I2889) in morphologically distinct regions of fiber was calculated. In acc...
Lignin is indispensable for vascular plants. It allows their cells to coalesce into gravity-defying ...
Highly lignified vascular plant cell walls represent the majority of cellulosic biomass. Complete re...
Raman imaging to investigate ultrastructure and composition of plant cell walls: distribution of lig...
Hyperspectral Raman imaging was used to study the tissue/cell type specific distribution of lignin a...
At the molecular level the plant cell walls consist of a few nanometer thick semi-crystalline cellul...
Chemical imaging by confocal Raman microscopy has been used for the visualization of the cellulose a...
Enzymatic saccharification of lignocellulosic biomass is a bottleneck for its use in the green chemi...
Background: Lignin and hemicelluloses are the major components limiting enzyme infiltration into cel...
The macromolecular organization of the secondary wall of the cells from tree xylem is in large part ...
Lignin engineering is a promising tool to reduce the energy input and the need of chemical pre-treat...
The woody secondary cell walls of plants are the largest repository of renewable carbon biopolymers ...
<p>The lignin signal (1600 cm<sup>−1</sup>) was obtained using coherent anti-Stokes Raman (CARS) mic...
Background: Besides classical utilization of wood and paper, lignocellulosic biomass has become incr...
It is well known that the xylem of gymnosperm trees consists mainly of tracheids and that the dimens...
Abstract Understanding plant cell wall cross-linking chemistry and polymeric architecture is key to ...
Lignin is indispensable for vascular plants. It allows their cells to coalesce into gravity-defying ...
Highly lignified vascular plant cell walls represent the majority of cellulosic biomass. Complete re...
Raman imaging to investigate ultrastructure and composition of plant cell walls: distribution of lig...
Hyperspectral Raman imaging was used to study the tissue/cell type specific distribution of lignin a...
At the molecular level the plant cell walls consist of a few nanometer thick semi-crystalline cellul...
Chemical imaging by confocal Raman microscopy has been used for the visualization of the cellulose a...
Enzymatic saccharification of lignocellulosic biomass is a bottleneck for its use in the green chemi...
Background: Lignin and hemicelluloses are the major components limiting enzyme infiltration into cel...
The macromolecular organization of the secondary wall of the cells from tree xylem is in large part ...
Lignin engineering is a promising tool to reduce the energy input and the need of chemical pre-treat...
The woody secondary cell walls of plants are the largest repository of renewable carbon biopolymers ...
<p>The lignin signal (1600 cm<sup>−1</sup>) was obtained using coherent anti-Stokes Raman (CARS) mic...
Background: Besides classical utilization of wood and paper, lignocellulosic biomass has become incr...
It is well known that the xylem of gymnosperm trees consists mainly of tracheids and that the dimens...
Abstract Understanding plant cell wall cross-linking chemistry and polymeric architecture is key to ...
Lignin is indispensable for vascular plants. It allows their cells to coalesce into gravity-defying ...
Highly lignified vascular plant cell walls represent the majority of cellulosic biomass. Complete re...
Raman imaging to investigate ultrastructure and composition of plant cell walls: distribution of lig...