At the molecular level the plant cell walls consist of a few nanometer thick semi-crystalline cellulose fibrils embedded in amorphous matrix polymers such as pectins, hemicelluloses, and lignins. The arrangement of these molecules within the cell wall in different plant tissues, cells and cell wall layers is of crucial importance for a better understanding and thus optimized utilization of plant biomass. During the last years Confocal Raman microscopy evolved as a powerful method in plant science by revealing the different molecules in context with the microstructure. In this study two-dimensional spectral maps have been acquired of micro-cross-sections of spruce (softwood) and beech (hardwood). Raman images have been derived by using univa...
The determinations of cellulose and lignin are important in wood analysis from both perspectives: ch...
The outside of plants, including fruit, are covered by a cuticular membrane (CM). This membrane serv...
This paper presents a computational framework for chemical profiling of the plant cell wall through ...
doi: 10.3389/fpls.2014.00306 Revealing changes in molecular composition of plant cell walls on the m...
Hyperspectral Raman imaging was used to study the tissue/cell type specific distribution of lignin a...
Background: Plant cell walls are nanocomposites based on cellulose microfibrils embedded in a matrix...
Abstract Understanding plant cell wall cross-linking chemistry and polymeric architecture is key to ...
Raman microspectra combine information on chemical composition of plant tissues with spatial informa...
Background Besides classical utilization of wood and paper, lignocellulosic biomass has become incr...
Enzymatic saccharification of lignocellulosic biomass is a bottleneck for its use in the green chemi...
Raman imaging to investigate ultrastructure and composition of plant cell walls: distribution of lig...
Highly lignified vascular plant cell walls represent the majority of cellulosic biomass. Complete re...
Additional file 10: Figure S4. VCA (top) and NMF (bottom) analyses of the data set Spruce, without p...
Abstract. To gain a better understanding on structure, chemical composition and properties of plant ...
It is well known that the xylem of gymnosperm trees consists mainly of tracheids and that the dimens...
The determinations of cellulose and lignin are important in wood analysis from both perspectives: ch...
The outside of plants, including fruit, are covered by a cuticular membrane (CM). This membrane serv...
This paper presents a computational framework for chemical profiling of the plant cell wall through ...
doi: 10.3389/fpls.2014.00306 Revealing changes in molecular composition of plant cell walls on the m...
Hyperspectral Raman imaging was used to study the tissue/cell type specific distribution of lignin a...
Background: Plant cell walls are nanocomposites based on cellulose microfibrils embedded in a matrix...
Abstract Understanding plant cell wall cross-linking chemistry and polymeric architecture is key to ...
Raman microspectra combine information on chemical composition of plant tissues with spatial informa...
Background Besides classical utilization of wood and paper, lignocellulosic biomass has become incr...
Enzymatic saccharification of lignocellulosic biomass is a bottleneck for its use in the green chemi...
Raman imaging to investigate ultrastructure and composition of plant cell walls: distribution of lig...
Highly lignified vascular plant cell walls represent the majority of cellulosic biomass. Complete re...
Additional file 10: Figure S4. VCA (top) and NMF (bottom) analyses of the data set Spruce, without p...
Abstract. To gain a better understanding on structure, chemical composition and properties of plant ...
It is well known that the xylem of gymnosperm trees consists mainly of tracheids and that the dimens...
The determinations of cellulose and lignin are important in wood analysis from both perspectives: ch...
The outside of plants, including fruit, are covered by a cuticular membrane (CM). This membrane serv...
This paper presents a computational framework for chemical profiling of the plant cell wall through ...