The development of multicellular organisms relies on the coordinated control of cell divisions leading to proper patterning and growth1, 2, 3. The molecular mechanisms underlying pattern formation, particularly the regulation of formative cell divisions, remain poorly understood. In Arabidopsis, formative divisions generating the root ground tissue are controlled by SHORTROOT (SHR) and SCARECROW (SCR)4, 5, 6. Here we show, using cell-type-specific transcriptional effects of SHR and SCR combined with data from chromatin immunoprecipitation-based microarray experiments, that SHR regulates the spatiotemporal activation of specific genes involved in cell division. Coincident with the onset of a specific formative division, SHR and SCR directly ...
Tissue patterns are dynamically maintained. Continuous formation of plant tissues during postembryon...
Tissue patterns are dynamically maintained. Continuous formation of plant tissues during postembryon...
Tissue patterns are dynamically maintained. Continuous formation of plant tissues during postembryon...
The development of multicellular organisms relies on the coordinated control of cell divisions leadi...
AbstractAsymmetric cell divisions play an important role in the establishment and propagation of the...
In the Arabidopsis root meristem, ground tissue stem cell daughters perform an asymmetric division t...
<p>Stem cell specification in multicellular organisms relies on the precise spatiotemporal control o...
SHORT-ROOT (SHR) and SCARECROW (SCR) are required for stem cell maintenance in the Arabidopsis (Arab...
Stem cell specification in multicellular organisms relies on the precise spatiotemporal control of R...
SHORT-ROOT (SHR) and SCARECROW (SCR) are required for stem cell maintenance in the Arabidopsis (Arab...
SHORT-ROOT (SHR) and SCARECROW (SCR) are required for stem cell maintenance in the Arabidopsis (Arab...
Plants produce new organs post-embryonically throughout their entire life cycle. This is due to stem...
Cell-cell communication is key to coordinated cellular functions in multicellular organisms. In addi...
<p>Tissue patterns are dynamically maintained. Continuous formation of plant tissues during postembr...
Tissue patterns are dynamically maintained. Continuous formation of plant tissues during postembryon...
Tissue patterns are dynamically maintained. Continuous formation of plant tissues during postembryon...
Tissue patterns are dynamically maintained. Continuous formation of plant tissues during postembryon...
Tissue patterns are dynamically maintained. Continuous formation of plant tissues during postembryon...
The development of multicellular organisms relies on the coordinated control of cell divisions leadi...
AbstractAsymmetric cell divisions play an important role in the establishment and propagation of the...
In the Arabidopsis root meristem, ground tissue stem cell daughters perform an asymmetric division t...
<p>Stem cell specification in multicellular organisms relies on the precise spatiotemporal control o...
SHORT-ROOT (SHR) and SCARECROW (SCR) are required for stem cell maintenance in the Arabidopsis (Arab...
Stem cell specification in multicellular organisms relies on the precise spatiotemporal control of R...
SHORT-ROOT (SHR) and SCARECROW (SCR) are required for stem cell maintenance in the Arabidopsis (Arab...
SHORT-ROOT (SHR) and SCARECROW (SCR) are required for stem cell maintenance in the Arabidopsis (Arab...
Plants produce new organs post-embryonically throughout their entire life cycle. This is due to stem...
Cell-cell communication is key to coordinated cellular functions in multicellular organisms. In addi...
<p>Tissue patterns are dynamically maintained. Continuous formation of plant tissues during postembr...
Tissue patterns are dynamically maintained. Continuous formation of plant tissues during postembryon...
Tissue patterns are dynamically maintained. Continuous formation of plant tissues during postembryon...
Tissue patterns are dynamically maintained. Continuous formation of plant tissues during postembryon...
Tissue patterns are dynamically maintained. Continuous formation of plant tissues during postembryon...