about
Shifting foundations: the mechanical cell wall and developmentHow to let go: pectin and plant cell adhesionMechano-chemical aspects of organ formation in Arabidopsis thaliana: the relationship between auxin and pectinHow a plant builds leaves.Pectin-induced changes in cell wall mechanics underlie organ initiation in Arabidopsis.Probing the mechanical contributions of the pectin matrix: insights for cell growth.Morphological Plant Modeling: Unleashing Geometric and Topological Potential within the Plant SciencesMeasuring the mechanical properties of plant cells by combining micro-indentation with osmotic treatments.Genes directly regulated by LEAFY COTYLEDON2 provide insight into the control of embryo maturation and somatic embryogenesisCell wall mechanics and growth control in plants: the role of pectins revisitedArabidopsis LEAFY COTYLEDON2 induces maturation traits and auxin activity: Implications for somatic embryogenesis.LECs go crazy in embryo development.Shrinking the hammer: micromechanical approaches to morphogenesis.Tuning of pectin methylesterification: consequences for cell wall biomechanics and development.Three grape CBF/DREB1 genes respond to low temperature, drought and abscisic acid.Measuring the elasticity of plant cells with atomic force microscopy.Stomatal Opening Involves Polar, Not Radial, Stiffening Of Guard Cells.Towards an understanding of spiral patterning in the Sargassum muticum shoot apex.Kinesin-4 Functions in Vesicular Transport on Cortical Microtubules and Regulates Cell Wall Mechanics during Cell Elongation in Plants.Leaf asymmetry as a developmental constraint imposed by auxin-dependent phyllotactic patterning.TANMEI/EMB2757 encodes a WD repeat protein required for embryo development in Arabidopsis.An Automated Confocal Micro-Extensometer Enables in Vivo Quantification of Mechanical Properties with Cellular Resolution.Branched pectic galactan in phloem-sieve-element cell walls: implications for cell mechanics.Plant Development: Lessons from Getting It Twisted.Of puzzles and pavements: a quantitative exploration of leaf epidermal cell shapeAnisotropic growth is achieved through the additive mechanical effect of material anisotropy and elastic asymmetryAnalyzing Cell Wall Elasticity After Hormone Treatment: An Example Using Tobacco BY-2 Cells and AuxinAuxin and Organogenesis: Initiation of Organs and Nurturing a Scientific Spirit
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description
hulumtuese
@sq
onderzoeker
@nl
researcher
@en
հետազոտող
@hy
name
Siobhan A Braybrook
@es
Siobhan A. Braybrook
@en
Siobhan A. Braybrook
@sl
type
label
Siobhan A Braybrook
@es
Siobhan A. Braybrook
@en
Siobhan A. Braybrook
@sl
prefLabel
Siobhan A Braybrook
@es
Siobhan A. Braybrook
@en
Siobhan A. Braybrook
@sl
P106
P1153
12767061700
P21
P31
P496
0000-0002-4308-5580
P569
2000-01-01T00:00:00Z