Xylan is a crucial component of many plant primary and secondary cell walls. However, the structure and function of xylan in the dicotyledon primary cell wall is not well understood. Here, we characterized a xylan that is specific to tissues enriched in Arabidopsis primary cell walls. Unlike previously described xylans, this xylan carries a pentose linked 1-2 to the α-1,2-d-glucuronic acid (GlcA) side chains on the β-1,4-Xyl backbone. The frequent and precisely regular spacing of GlcA substitutions every six xylosyl residues along the backbone is also unlike that previously observed in secondary cell wall xylan. Molecular genetics, in vitro assays, and expression data suggest that IRX9L, IRX10L and IRX14 are required for xylan backbone...
Insights into the evolution of plant cell walls have important implications for comprehending these ...
Xylan is the second most abundant polysaccharide on Earth, and represents a major component of both ...
Insights into the evolution of plant cell walls have important implications for comprehending these ...
Xylan is a crucial component of many plant primary and secondary cell walls. However, the structure ...
Xylan is a crucial component of many plant primary and secondary cell walls. However, the structure ...
Xylan, the second most abundant cell wall polysaccharide, is composed of a linear backbone of b-(1,4...
Xylans constitute the main non-cellulosic polysaccharide in the secondary cell walls of plants. Seve...
The molecular architecture of plant secondary cell walls is still not resolved. There are several pr...
All cells of terrestrial plants are fortified by walls composed of crystalline cellulose microfibril...
International audienceThe hemicellulose glucuronoxylan (GX) is a major component of plant secondary ...
Hemicellulose polysaccharides influence assembly and properties of the plant primary cell wall (PCW)...
Xylans constitute the major non-cellulosic component of plant biomass. Xylan biosynthesis is particu...
Xylans constitute the major non-cellulosic component of plant biomass. Xylan biosynthesis is particu...
Xylans constitute the main non-cellulosic polysaccharide in the secondary cell walls of plants. Seve...
Xylan is the second most abundant polysaccharide on Earth, and represents a major component of both ...
Insights into the evolution of plant cell walls have important implications for comprehending these ...
Xylan is the second most abundant polysaccharide on Earth, and represents a major component of both ...
Insights into the evolution of plant cell walls have important implications for comprehending these ...
Xylan is a crucial component of many plant primary and secondary cell walls. However, the structure ...
Xylan is a crucial component of many plant primary and secondary cell walls. However, the structure ...
Xylan, the second most abundant cell wall polysaccharide, is composed of a linear backbone of b-(1,4...
Xylans constitute the main non-cellulosic polysaccharide in the secondary cell walls of plants. Seve...
The molecular architecture of plant secondary cell walls is still not resolved. There are several pr...
All cells of terrestrial plants are fortified by walls composed of crystalline cellulose microfibril...
International audienceThe hemicellulose glucuronoxylan (GX) is a major component of plant secondary ...
Hemicellulose polysaccharides influence assembly and properties of the plant primary cell wall (PCW)...
Xylans constitute the major non-cellulosic component of plant biomass. Xylan biosynthesis is particu...
Xylans constitute the major non-cellulosic component of plant biomass. Xylan biosynthesis is particu...
Xylans constitute the main non-cellulosic polysaccharide in the secondary cell walls of plants. Seve...
Xylan is the second most abundant polysaccharide on Earth, and represents a major component of both ...
Insights into the evolution of plant cell walls have important implications for comprehending these ...
Xylan is the second most abundant polysaccharide on Earth, and represents a major component of both ...
Insights into the evolution of plant cell walls have important implications for comprehending these ...