<div><p>The study of the concerted action of hormones and transcription factors is fundamental to understand cell differentiation and pattern formation during organ development. The root apical meristem of <i>Arabidopsis thaliana</i> is a useful model to address this. It has a stem cell niche near its tip conformed of a quiescent organizer and stem or initial cells around it, then a proliferation domain followed by a transition domain, where cells diminish division rate before transiting to the elongation zone; here, cells grow anisotropically prior to their final differentiation towards the plant base. A minimal model of the gene regulatory network that underlies cell-fate specification and patterning at the root stem cell niche was propos...
Plant postembryonic development takes place in the meristems, where stem cells self-renew and produc...
SummaryIn the Arabidopsis root meristem, polar auxin transport creates a transcriptional auxin respo...
SummaryPlant postembryonic development takes place in the meristems, where stem cells self-renew and...
International audienceThe study of the concerted action of hormones and transcription factors is fun...
The study of the concerted action of hormones and transcription factors is fundamental to understand...
Root growth and development in Arabidopsis thaliana are sustained by a specialised zone termed the m...
International audienceThe growth of the root of Arabidopsis thaliana is sustained by the meristem, a...
The growth of the root of Arabidopsis thaliana is sustained by the meristem, a region of cell prolif...
<div><p>A central issue in developmental biology is to uncover the mechanisms by which stem cells ma...
Plants possess the rare capability to shape the own architecture according to biotic and abiotic sti...
Root growth and development in Arabidopsis thaliana are sustained by a specialised zone termed the m...
International audienceIn the Arabidopsis root meristem, polar auxin transport creates a transcriptio...
The root meristem is a group of stem cells at the root tip that give rise to differentiated root tis...
Plant postembryonic development takes place in the meristems, where stem cells self-renew and produc...
Plant postembryonic development takes place in the meristems, where stem cells self-renew and produc...
SummaryIn the Arabidopsis root meristem, polar auxin transport creates a transcriptional auxin respo...
SummaryPlant postembryonic development takes place in the meristems, where stem cells self-renew and...
International audienceThe study of the concerted action of hormones and transcription factors is fun...
The study of the concerted action of hormones and transcription factors is fundamental to understand...
Root growth and development in Arabidopsis thaliana are sustained by a specialised zone termed the m...
International audienceThe growth of the root of Arabidopsis thaliana is sustained by the meristem, a...
The growth of the root of Arabidopsis thaliana is sustained by the meristem, a region of cell prolif...
<div><p>A central issue in developmental biology is to uncover the mechanisms by which stem cells ma...
Plants possess the rare capability to shape the own architecture according to biotic and abiotic sti...
Root growth and development in Arabidopsis thaliana are sustained by a specialised zone termed the m...
International audienceIn the Arabidopsis root meristem, polar auxin transport creates a transcriptio...
The root meristem is a group of stem cells at the root tip that give rise to differentiated root tis...
Plant postembryonic development takes place in the meristems, where stem cells self-renew and produc...
Plant postembryonic development takes place in the meristems, where stem cells self-renew and produc...
SummaryIn the Arabidopsis root meristem, polar auxin transport creates a transcriptional auxin respo...
SummaryPlant postembryonic development takes place in the meristems, where stem cells self-renew and...