Epidermal cells of leaves are diverse: tabular pavement cells, trichomes, and stomatal complexes. Pavement cells from the monocot Zea mays (maize) and the eudicot Arabidopsis thaliana (Arabidopsis) have highly undulate anticlinal walls. The molecular basis for generating these undulating margins has been extensively investigated in these species. This has led to two assumptions: first, that particular plant lineages are characterized by particular pavement cell shapes; and second, that undulatory cell shapes are common enough to be model shapes. To test these assumptions, we quantified pavement cell shape in epidermides from the leaves of 278 vascular plant taxa. We found that monocot pavement cells tended to have weakly undulating margins,...
International audienceThe shape and function of plant cells are often highly interdependent. The puz...
International audienceThe epidermis of aerial plant organs is thought to be limiting for growth, bec...
The growth and development of an organism depend on the coordinated expansion and shape acquisition ...
Epidermal cells of leaves are diverse: tabular pavement cells, trichomes, and stomatal complexes. Pa...
Epidermal cells of leaves are diverse: tabular pavement cells, trichomes, and stomatal complexes. Pa...
Pavement cells in the leaf epidermis can exhibit a wide variety of shapes. Undulations in the anticl...
The jigsaw puzzle-shaped pavement cells in the leaf epidermis collectively function as a load-bearin...
The quest for the discovery of mathematical principles that underlie biological phenomena is ancient...
The quest for the discovery of mathematical principles that underlie biological phenomena is ancient...
The quest for the discovery of mathematical principles that underlie biological phenomena is ancient...
D'Arcy Thompson emphasised the importance of surface tension as a potential driving force in establi...
The epidermis of aerial plant organs is thought to be limiting for growth, because it acts as a cont...
Dicot leaves are comprised of a heterogeneous mosaic of jig-saw-puzzle piece shaped pavement cells t...
The shape and function of plant cells are thought to be closely related. The puzzle-shaped epiderma...
International audienceThe shape and function of plant cells are often highly interdependent. The puz...
International audienceThe epidermis of aerial plant organs is thought to be limiting for growth, bec...
The growth and development of an organism depend on the coordinated expansion and shape acquisition ...
Epidermal cells of leaves are diverse: tabular pavement cells, trichomes, and stomatal complexes. Pa...
Epidermal cells of leaves are diverse: tabular pavement cells, trichomes, and stomatal complexes. Pa...
Pavement cells in the leaf epidermis can exhibit a wide variety of shapes. Undulations in the anticl...
The jigsaw puzzle-shaped pavement cells in the leaf epidermis collectively function as a load-bearin...
The quest for the discovery of mathematical principles that underlie biological phenomena is ancient...
The quest for the discovery of mathematical principles that underlie biological phenomena is ancient...
The quest for the discovery of mathematical principles that underlie biological phenomena is ancient...
D'Arcy Thompson emphasised the importance of surface tension as a potential driving force in establi...
The epidermis of aerial plant organs is thought to be limiting for growth, because it acts as a cont...
Dicot leaves are comprised of a heterogeneous mosaic of jig-saw-puzzle piece shaped pavement cells t...
The shape and function of plant cells are thought to be closely related. The puzzle-shaped epiderma...
International audienceThe shape and function of plant cells are often highly interdependent. The puz...
International audienceThe epidermis of aerial plant organs is thought to be limiting for growth, bec...
The growth and development of an organism depend on the coordinated expansion and shape acquisition ...