Wood, a type of xylem tissue, originates from cell proliferation of the vascular cambium. Xylem is produced inside, and phloem outside, of the cambium(1). Morphogenesis in plants is typically coordinated by organizer cells that direct the adjacent stem cells to undergo programmed cell division and differentiation. The location of the vascular cambium stem cells and whether the organizer concept applies to the cambium are currently unknown(2). Here, using lineage-tracing and molecular genetic studies in the roots of Arabidopsis thaliana, we show that cells with a xylem identity direct adjacent vascular cambial cells to divide and function as stem cells. Thus, these xylem-identity cells constitute an organizer. A local maximum of the phytohor...
The vascular system is organized throughout the plant body for transporting water, nutrients, and si...
Adventitious rooting is a process essential for the survival of numerous plant species because provi...
Plant vasculature consists of two major conductive cell types, xylem tracheary elements and phloem s...
Plant root morphogenesis, including primary patterning, secondary development and formation of later...
Plants possess the rare capability to shape the own architecture according to biotic and abiotic sti...
Pattern formation is typically controlled through the interaction between molecular signals within a...
Pattern formation is typically controlled through the interaction between molecular signals within a...
Vascular cambium contains bifacial stem cells, which produce secondary xylem to one side and seconda...
The development of secondary vascular tissue enhances the transport capacity and mechanical strength...
The Arabidopsis root has provided an excellent model for understanding patterning processes and cell...
The plant vascular system, composed of xylem and phloem, evolved to connect plant organs and transpo...
The Arabidopsis root has provided an excellent model for understanding patterning processes and cell...
Vascular system plays an essential role as conductive and supporting machinery in the majority of la...
Adventitious root (ARs) are essential for the survival of numerous plant species, because they contr...
AbstractPatterning of Arabidopsis roots is mediated by cell–cell interactions, information flowing f...
The vascular system is organized throughout the plant body for transporting water, nutrients, and si...
Adventitious rooting is a process essential for the survival of numerous plant species because provi...
Plant vasculature consists of two major conductive cell types, xylem tracheary elements and phloem s...
Plant root morphogenesis, including primary patterning, secondary development and formation of later...
Plants possess the rare capability to shape the own architecture according to biotic and abiotic sti...
Pattern formation is typically controlled through the interaction between molecular signals within a...
Pattern formation is typically controlled through the interaction between molecular signals within a...
Vascular cambium contains bifacial stem cells, which produce secondary xylem to one side and seconda...
The development of secondary vascular tissue enhances the transport capacity and mechanical strength...
The Arabidopsis root has provided an excellent model for understanding patterning processes and cell...
The plant vascular system, composed of xylem and phloem, evolved to connect plant organs and transpo...
The Arabidopsis root has provided an excellent model for understanding patterning processes and cell...
Vascular system plays an essential role as conductive and supporting machinery in the majority of la...
Adventitious root (ARs) are essential for the survival of numerous plant species, because they contr...
AbstractPatterning of Arabidopsis roots is mediated by cell–cell interactions, information flowing f...
The vascular system is organized throughout the plant body for transporting water, nutrients, and si...
Adventitious rooting is a process essential for the survival of numerous plant species because provi...
Plant vasculature consists of two major conductive cell types, xylem tracheary elements and phloem s...