Nanoindentation experiments are performed using an atomic force microscope (AFM) to quantify the spatial distribution of mechanical properties of plant cell walls at nanometre length scales. At any specific location on the cell wall, a complex (non-linear) force-indentation response occurs that can be deconvoluted using a unique multiregime analysis (MRA). This allows an unambiguous evaluation of the local transverse elastic modulus of the wall. Nanomechanical measurements on suspension-cultured cells (SCCs), derived from Italian ryegrass (Lolium multiflorum) starchy endosperm, show three characteristic modes of deformation and a spatial distribution of elastic moduli across the surface. 'Soft' and 'hard' domains are found across length sca...
Although growth and morphogenesis are controlled by genetics, physical shape change in plant tissue ...
In the last few decades, micro- and nanomechanical methods have become increasingly important analyt...
Abstract This study presents a methodology for a high-throughput digitization and quantification pro...
Nanoindentation experiments are performed using an atomic force microscope (AFM) to quantify the spa...
The size, shape and stability of a plant depend on the flexibility and integrity of its cell walls, ...
The physicochemical properties of plant fibres are determined by the fibre morphology and structural...
Plant cell walls are complex and dynamic structures mainly composed of a network of extended polysac...
International audienceStiffness plays a central action in plant cell extension. Here, we present a p...
International audienceWe present here the use of atomic force microscopy to indent plant tissues and...
Cell-wall mechanical properties play a key role in the growth and the protection of plants. However,...
International audienceIn general, cell growth is a mechanical process that balances internal and ext...
Single microbial cells can show important local variations of elasticity due to the complex, anisotr...
Ethanol production using extracted cellulose from plant cell walls (PCW) is a very promising approac...
Cell-wall mechanical properties play a key role in the growth and the protection of plants. However,...
AbstractCell-wall mechanical properties play a key role in the growth and the protection of plants. ...
Although growth and morphogenesis are controlled by genetics, physical shape change in plant tissue ...
In the last few decades, micro- and nanomechanical methods have become increasingly important analyt...
Abstract This study presents a methodology for a high-throughput digitization and quantification pro...
Nanoindentation experiments are performed using an atomic force microscope (AFM) to quantify the spa...
The size, shape and stability of a plant depend on the flexibility and integrity of its cell walls, ...
The physicochemical properties of plant fibres are determined by the fibre morphology and structural...
Plant cell walls are complex and dynamic structures mainly composed of a network of extended polysac...
International audienceStiffness plays a central action in plant cell extension. Here, we present a p...
International audienceWe present here the use of atomic force microscopy to indent plant tissues and...
Cell-wall mechanical properties play a key role in the growth and the protection of plants. However,...
International audienceIn general, cell growth is a mechanical process that balances internal and ext...
Single microbial cells can show important local variations of elasticity due to the complex, anisotr...
Ethanol production using extracted cellulose from plant cell walls (PCW) is a very promising approac...
Cell-wall mechanical properties play a key role in the growth and the protection of plants. However,...
AbstractCell-wall mechanical properties play a key role in the growth and the protection of plants. ...
Although growth and morphogenesis are controlled by genetics, physical shape change in plant tissue ...
In the last few decades, micro- and nanomechanical methods have become increasingly important analyt...
Abstract This study presents a methodology for a high-throughput digitization and quantification pro...