Key message: Functional characterization of two tobacco genes, one involved in xylan synthesis and the other, a positive regulator of secondary cell wall formation, is reported. Abstract: Lignocellulosic secondary cell walls (SCW) provide essential plant materials for the production of second-generation bioethanol. Therefore, thorough understanding of the process of SCW formation in plants is beneficial for efficient bioethanol production. Recently, we provided the first proof-of-concept for using virus-induced gene silencing (VIGS) approach for rapid functional characterization of nine genes involved in cellulose, hemicellulose and lignin synthesis during SCW formation. Here, we report VIGS-mediated functional characterization of two tobac...
Lignin is the second most abundant biopolymer present in vascular plants. Lignification was one of t...
The synthesis of secondary cell walls is an important process in vascular plants. Walls not only ma...
The plant cell wall is a complex and dynamic structure, involved in interaction with the environment...
Key message: Functional characterization of two tobacco genes, one involved in xylan synthesis and t...
Virus-induced gene silencing (VIGS) is a powerful genetic tool for rapid assessment of plant gene fu...
AbstractIn this study, an EST library (EH663598–EH666265) obtained from xylogenic tissue cultures of...
Secondary walls are mainly composed of cellulose, hemicel-luloses (xylan and glucomannan) and lignin...
© 2018 Dr Zheng LiPlant cell walls are essential for plant growth and development, and they also pro...
Plant lignocellulosic biomass, mostly composed of polysaccharide-rich secondary cell walls (SCWs), p...
Cell walls are a distinct feature of plants and their chemical constituents, cellulose, hemicellulos...
© The Author(s) 2017. Wood formation is a biological process during which the most abundant lignocel...
In tobacco plants the effect of antisense down-regulation of various genes encoding enzymes of the m...
Switchgrass (Panicum virgatum L.) is a leading lignocellulosic bioenergy feedstock. Cellulose is a m...
The secondary cell wall constitutes a rigid frame of cells in plant tissues where rigidity is requir...
Genetic manipulation of cellulose synthase genes (CesA) might be expected to increase cellulose cont...
Lignin is the second most abundant biopolymer present in vascular plants. Lignification was one of t...
The synthesis of secondary cell walls is an important process in vascular plants. Walls not only ma...
The plant cell wall is a complex and dynamic structure, involved in interaction with the environment...
Key message: Functional characterization of two tobacco genes, one involved in xylan synthesis and t...
Virus-induced gene silencing (VIGS) is a powerful genetic tool for rapid assessment of plant gene fu...
AbstractIn this study, an EST library (EH663598–EH666265) obtained from xylogenic tissue cultures of...
Secondary walls are mainly composed of cellulose, hemicel-luloses (xylan and glucomannan) and lignin...
© 2018 Dr Zheng LiPlant cell walls are essential for plant growth and development, and they also pro...
Plant lignocellulosic biomass, mostly composed of polysaccharide-rich secondary cell walls (SCWs), p...
Cell walls are a distinct feature of plants and their chemical constituents, cellulose, hemicellulos...
© The Author(s) 2017. Wood formation is a biological process during which the most abundant lignocel...
In tobacco plants the effect of antisense down-regulation of various genes encoding enzymes of the m...
Switchgrass (Panicum virgatum L.) is a leading lignocellulosic bioenergy feedstock. Cellulose is a m...
The secondary cell wall constitutes a rigid frame of cells in plant tissues where rigidity is requir...
Genetic manipulation of cellulose synthase genes (CesA) might be expected to increase cellulose cont...
Lignin is the second most abundant biopolymer present in vascular plants. Lignification was one of t...
The synthesis of secondary cell walls is an important process in vascular plants. Walls not only ma...
The plant cell wall is a complex and dynamic structure, involved in interaction with the environment...