<p>The spatial steady state profile of cytokinin in a source-diffusion-decay model, for different degradation rates. The lower panel is zoomed in (50x) to the dotted area within the upper panel; the root sections are drawn to scale for comparison with the gradient. Dotted lines mark the characteristic length of each gradient. The blue line shows the cytokinin distribution with degradation rate and diffusion coefficient similar to auxin; the red and green lines represent gradients that could be informative at the transverse scale of the root meristematic zone.</p
<b>Highlights</b>\ud \ud - Investigate time for morphogen gradient to effectively reach steady stat...
The formation and growth of multi-cellular organisms and tissues from several genetically identical ...
Highlights - Investigate time for morphogen gradient to effectively reach steady state. - Analyse bo...
<p>(A–D) Confocal images showing expression of the fluorescent <i>TCS::GFP</i> cytokinin response ma...
<p>The steady state spatial gradients of <i>Dl</i> are due to diffusion and degradation. The red sol...
Successful biological development via spatial and temporal regulations of cell differentiation relie...
<p>Parameters are specified as: (degradation), (repression), (activation), and diffusion coeffici...
A) Schematic of the simple reaction-diffusion model in which a species X is activated by a rate kx(r...
<p>Two different views of three different virtual cell cultures are shown. In the left panels the ce...
Cytokinins are pivotal plant hormones regulating the cell cycle and many components of development. ...
Successful biological development via spatial and temporal regulations of cell differentiation relie...
(A) Establishment of functional CSs (PI unblocked), patchy suberin, and continuous suberin along the...
The gibberellin phytohormones regulate growth and development throughout the plant lifecycle. Upstre...
International audienceAbstract Morphogen gradients are a central concept in developmental biology. T...
An auxin maximum is positioned along the xylem axis of the Arabidopsis root tip. The pat-tern depend...
<b>Highlights</b>\ud \ud - Investigate time for morphogen gradient to effectively reach steady stat...
The formation and growth of multi-cellular organisms and tissues from several genetically identical ...
Highlights - Investigate time for morphogen gradient to effectively reach steady state. - Analyse bo...
<p>(A–D) Confocal images showing expression of the fluorescent <i>TCS::GFP</i> cytokinin response ma...
<p>The steady state spatial gradients of <i>Dl</i> are due to diffusion and degradation. The red sol...
Successful biological development via spatial and temporal regulations of cell differentiation relie...
<p>Parameters are specified as: (degradation), (repression), (activation), and diffusion coeffici...
A) Schematic of the simple reaction-diffusion model in which a species X is activated by a rate kx(r...
<p>Two different views of three different virtual cell cultures are shown. In the left panels the ce...
Cytokinins are pivotal plant hormones regulating the cell cycle and many components of development. ...
Successful biological development via spatial and temporal regulations of cell differentiation relie...
(A) Establishment of functional CSs (PI unblocked), patchy suberin, and continuous suberin along the...
The gibberellin phytohormones regulate growth and development throughout the plant lifecycle. Upstre...
International audienceAbstract Morphogen gradients are a central concept in developmental biology. T...
An auxin maximum is positioned along the xylem axis of the Arabidopsis root tip. The pat-tern depend...
<b>Highlights</b>\ud \ud - Investigate time for morphogen gradient to effectively reach steady stat...
The formation and growth of multi-cellular organisms and tissues from several genetically identical ...
Highlights - Investigate time for morphogen gradient to effectively reach steady state. - Analyse bo...