The primary cell walls of growing and fleshy plant tissue mostly share a common set of molecular components, cellulose, xyloglucan (XyG), and pectin, that are required for both inherent strength and the ability to respond to cell expansion during growth. To probe molecular mechanisms underlying material properties, cell walls and analog composites from Acetobacter xylinus have been measured under small deformation and uniaxial extension conditions as a function of molecular composition. Small deformation oscillatory rheology shows a common frequency response for homogenized native cell walls, their sequential extraction residues, and bacterial cellulose alone. This behavior is characteristic of structuring via entanglement of cellulosic rod...
ABSTRACT Plant cell walls, like a multitude of other biological materials, are natural fiber-reinfor...
The polymeric basis for the mechanical properties of primary plant cell walls has been investigated ...
Illuminating fundamental aspects of plant cell wall mechanics will lead to novel biological and engi...
Mechanical effects of turgor pressure on cell walls were simulated by deforming cell wall analogues ...
A cellulose/xyloglucan framework is considered to form the basis for the mechanical properties of pr...
Hemicelluloses exhibit a range of interactions with cellulose, the mechanical consequences of which ...
Plant cell walls are made of interacting networks of polysaccharides (cellulose, hemicelluloses, pec...
Xyloglucan-acting enzymes are believed to have effects on type I primary plant cell wall mechanical ...
The plant primary cell wall is a three-dimensional interwoven network of cellulose microfibrils, cro...
Xyloglucan-acting enzymes are believed to have effects on type I primary plant cell wall mechanical ...
Xyloglucan-acting enzymes are believed to have effects on type I primary plant cell wall mechanical ...
Hemicelluloses exhibit a range of interactions with cellulose, the mechanical consequences of which ...
Hemicelluloses exhibit a range of interactions with cellulose, the mechanical consequences of which ...
Pectin and cellulose are major components of most primary cell walls, yet little is known about the ...
<div><p>Hemicelluloses exhibit a range of interactions with cellulose, the mechanical consequences o...
ABSTRACT Plant cell walls, like a multitude of other biological materials, are natural fiber-reinfor...
The polymeric basis for the mechanical properties of primary plant cell walls has been investigated ...
Illuminating fundamental aspects of plant cell wall mechanics will lead to novel biological and engi...
Mechanical effects of turgor pressure on cell walls were simulated by deforming cell wall analogues ...
A cellulose/xyloglucan framework is considered to form the basis for the mechanical properties of pr...
Hemicelluloses exhibit a range of interactions with cellulose, the mechanical consequences of which ...
Plant cell walls are made of interacting networks of polysaccharides (cellulose, hemicelluloses, pec...
Xyloglucan-acting enzymes are believed to have effects on type I primary plant cell wall mechanical ...
The plant primary cell wall is a three-dimensional interwoven network of cellulose microfibrils, cro...
Xyloglucan-acting enzymes are believed to have effects on type I primary plant cell wall mechanical ...
Xyloglucan-acting enzymes are believed to have effects on type I primary plant cell wall mechanical ...
Hemicelluloses exhibit a range of interactions with cellulose, the mechanical consequences of which ...
Hemicelluloses exhibit a range of interactions with cellulose, the mechanical consequences of which ...
Pectin and cellulose are major components of most primary cell walls, yet little is known about the ...
<div><p>Hemicelluloses exhibit a range of interactions with cellulose, the mechanical consequences o...
ABSTRACT Plant cell walls, like a multitude of other biological materials, are natural fiber-reinfor...
The polymeric basis for the mechanical properties of primary plant cell walls has been investigated ...
Illuminating fundamental aspects of plant cell wall mechanics will lead to novel biological and engi...