Background and Aims The process of vascular development in plants results in the formation of a specific array of bundles that run throughout the plant in a characteristic spatial arrangement. Although much is known about the genes involved in the specification of procambium, phloem and xylem, the dynamic processes and interactions that define the development of the radial arrangement of such tissues remain elusive. Methods This study presents a spatially explicit reaction-diffusion model defining a set of logical and functional rules to simulate the differentiation of procambium, phloem and xylem and their spatial patterns, starting from a homogeneous group of undifferentiated cells. Key Results Simulation results showed that the model is ...
<div><p>Plant vascular meristems are sets of pluripotent cells that enable radial growth by giving r...
The growth and development of plants exhibits a striking symmetry, visible in the regular arrangemen...
Pattern formation is typically controlled through the interaction between molecular signals within a...
Background and Aims The process of vascular development in plants results in the formation of a spec...
Background and Aims The process of vascular development in plants results in the formation of a spec...
The spatial arrangement of vascular bundles varies between plant species and organs. A novel reactio...
The spatial arrangement of vascular bundles varies between plant species and organs. A novel reactio...
Spontaneous spatial pattern formation as a result of dynamic interactions is common in nature at all...
Spontaneous spatial pattern formation as a result of dynamic interactions is common in nature at all...
Vascular tissue in plants provides a resource distribution network for water and nutrients that exhi...
Vascular tissues in plants are crucial to provide physical support and to transport water, sugars an...
Vascular tissues in plants are crucial to provide physical support and to transport water, sugars an...
Vascular tissues in plants are crucial to provide physical support and to transport water, sugars an...
Vascular tissues in plants are crucial to provide physical support and to transport water, sugars an...
<p>Vascular tissues in plants are crucial to provide physical support and to transport water, sugars...
<div><p>Plant vascular meristems are sets of pluripotent cells that enable radial growth by giving r...
The growth and development of plants exhibits a striking symmetry, visible in the regular arrangemen...
Pattern formation is typically controlled through the interaction between molecular signals within a...
Background and Aims The process of vascular development in plants results in the formation of a spec...
Background and Aims The process of vascular development in plants results in the formation of a spec...
The spatial arrangement of vascular bundles varies between plant species and organs. A novel reactio...
The spatial arrangement of vascular bundles varies between plant species and organs. A novel reactio...
Spontaneous spatial pattern formation as a result of dynamic interactions is common in nature at all...
Spontaneous spatial pattern formation as a result of dynamic interactions is common in nature at all...
Vascular tissue in plants provides a resource distribution network for water and nutrients that exhi...
Vascular tissues in plants are crucial to provide physical support and to transport water, sugars an...
Vascular tissues in plants are crucial to provide physical support and to transport water, sugars an...
Vascular tissues in plants are crucial to provide physical support and to transport water, sugars an...
Vascular tissues in plants are crucial to provide physical support and to transport water, sugars an...
<p>Vascular tissues in plants are crucial to provide physical support and to transport water, sugars...
<div><p>Plant vascular meristems are sets of pluripotent cells that enable radial growth by giving r...
The growth and development of plants exhibits a striking symmetry, visible in the regular arrangemen...
Pattern formation is typically controlled through the interaction between molecular signals within a...