A significant proportion of terrestrial biomass is constituted of xylem cells that make up woody plant tissue. Xylem is required for water transport, and is present in the vascular tissue with a second conductive tissue, phloem, required primarily for nutrient transport. Both xylem and phloem are derived from cell divisions in vascular meristems known as the cambium and procambium. One major component that influences several aspects of plant vascular development, including cell division in the vascular meristem, vascular organization and differentiation of vascular cell types, is a signalling module characterized by a peptide ligand called TRACHEARY ELEMENT DIFFERENTIATION INHIBITORY FACTOR (TDIF) and its cognate receptor, PHLOEM INTERCALAT...
The plant vascular system, composed of xylem and phloem, evolved to connect plant organs and transpo...
For centuries, humans have grown and used structures, based on vascular tissues in plants. One could...
Cell division and differentiation of stem cells are controlled by non-cell-autonomous signals in hig...
A significant proportion of terrestrial biomass is constituted of xylem cells that make up woody pla...
<p>A significant proportion of terrestrial biomass is constituted of xylem cells that make up woody ...
Vascular meristems generate the majority of biomass in higher plants. They constitute a bifacial ste...
The development of secondary vascular tissue enhances the transport capacity and mechanical strength...
Plants transport water and nutrients throughout their bodies using a specialised vascular system. Va...
In plants, the cambium and procambium are meristems from which vascular tissue is derived. In contra...
The balance between cell proliferation and differentiation in the cambium defines the formation of p...
Plant vasculature is required for the transport of water and solutes throughout the plant body. It i...
This special issue of Journal of Experimental Botany focuses on the developmental mechanisms require...
In plants, cells do not migrate. Tissues are frequently arranged in concentric rings, thus expansion...
The vascular system is organized throughout the plant body for transporting water, nutrients, and si...
Peptide signals mediate a variety of cell-to-cell communication crucial for plant growth and develop...
The plant vascular system, composed of xylem and phloem, evolved to connect plant organs and transpo...
For centuries, humans have grown and used structures, based on vascular tissues in plants. One could...
Cell division and differentiation of stem cells are controlled by non-cell-autonomous signals in hig...
A significant proportion of terrestrial biomass is constituted of xylem cells that make up woody pla...
<p>A significant proportion of terrestrial biomass is constituted of xylem cells that make up woody ...
Vascular meristems generate the majority of biomass in higher plants. They constitute a bifacial ste...
The development of secondary vascular tissue enhances the transport capacity and mechanical strength...
Plants transport water and nutrients throughout their bodies using a specialised vascular system. Va...
In plants, the cambium and procambium are meristems from which vascular tissue is derived. In contra...
The balance between cell proliferation and differentiation in the cambium defines the formation of p...
Plant vasculature is required for the transport of water and solutes throughout the plant body. It i...
This special issue of Journal of Experimental Botany focuses on the developmental mechanisms require...
In plants, cells do not migrate. Tissues are frequently arranged in concentric rings, thus expansion...
The vascular system is organized throughout the plant body for transporting water, nutrients, and si...
Peptide signals mediate a variety of cell-to-cell communication crucial for plant growth and develop...
The plant vascular system, composed of xylem and phloem, evolved to connect plant organs and transpo...
For centuries, humans have grown and used structures, based on vascular tissues in plants. One could...
Cell division and differentiation of stem cells are controlled by non-cell-autonomous signals in hig...