Lignin is the second most abundant biopolymer on earth and is found in the wood (xylem) of vascular land plants. To transport the hydro-mineral sap, xylem forms specialized conduit cells, called tracheary elements (TEs), which are hollow dead cylinders reinforced with lateral secondary cell walls (SCW). These SCWs incorporate lignin to gain mechanical strength, water impermeability and resistance against pathogens. The aim of this thesis is to understand the spatio-temporal deposition of lignin during TE differentiation and the relationship with its neighbouring cells. In vitro TE differentiating cell cultures of Zinnia elegans and Arabidopsis thaliana are ideal tools to study this process: cells differentiate simultaneously into 30-50% TEs...
Lignin is a phenolic polymer found predominantly in the secondary cell walls of vascular plants wher...
Plants are built of various specialized cell types that differ in their cell wall composition and st...
The final step of lignin biosynthesis is the polymerization of monolignols in apoplastic cell wall d...
Lignin is the second most abundant biopolymer on earth and is found in the wood (xylem) of vascular ...
Lignin is a critical structural component of plants, providing vascular integrity and mechanical str...
The evolutionary success of land plants was fostered by the acquisition of the xylem vascular tissue...
Lignin is indispensable for vascular plants. It allows their cells to coalesce into gravity-defying ...
Lignin is a critical phenolic polymer that reinforces secondary cell walls of plant cells. Lignin co...
Lignin, one of the three main components of the secondary cell wall, is an important phenolic biopol...
Lignin is a phenolic polymer that plays important roles in the structural integrity of plants. Both...
Lignin is a rigid, hydrophobic polymer that strengthens the cell wall of supportive fibres and water...
Main conclusion: Physiological and molecular studies support the view that xylogenesis can largely b...
The development of xylem tracheary elements (TEs) – the hydro-mineral sap conducting cells - has bee...
AbstractThe last step of lignin biosynthesis in Zinnia elegans suspension cell cultures (SCCs) catal...
Lignin is an essential compound of all vascular plants. Recent studies have also shown its presence ...
Lignin is a phenolic polymer found predominantly in the secondary cell walls of vascular plants wher...
Plants are built of various specialized cell types that differ in their cell wall composition and st...
The final step of lignin biosynthesis is the polymerization of monolignols in apoplastic cell wall d...
Lignin is the second most abundant biopolymer on earth and is found in the wood (xylem) of vascular ...
Lignin is a critical structural component of plants, providing vascular integrity and mechanical str...
The evolutionary success of land plants was fostered by the acquisition of the xylem vascular tissue...
Lignin is indispensable for vascular plants. It allows their cells to coalesce into gravity-defying ...
Lignin is a critical phenolic polymer that reinforces secondary cell walls of plant cells. Lignin co...
Lignin, one of the three main components of the secondary cell wall, is an important phenolic biopol...
Lignin is a phenolic polymer that plays important roles in the structural integrity of plants. Both...
Lignin is a rigid, hydrophobic polymer that strengthens the cell wall of supportive fibres and water...
Main conclusion: Physiological and molecular studies support the view that xylogenesis can largely b...
The development of xylem tracheary elements (TEs) – the hydro-mineral sap conducting cells - has bee...
AbstractThe last step of lignin biosynthesis in Zinnia elegans suspension cell cultures (SCCs) catal...
Lignin is an essential compound of all vascular plants. Recent studies have also shown its presence ...
Lignin is a phenolic polymer found predominantly in the secondary cell walls of vascular plants wher...
Plants are built of various specialized cell types that differ in their cell wall composition and st...
The final step of lignin biosynthesis is the polymerization of monolignols in apoplastic cell wall d...