In multicellular organisms, a stringent control of the transition between cell division and differentiation is crucial for correct tissue and organ development. In the Arabidopsis root, the boundary between dividing and differentiating cells is positioned by the antagonistic interaction of the hormones auxin and cytokinin. Cytokinin affects polar auxin transport, but how this impacts the positional information required to establish this tissue boundary, is still unknown. By combining computational modeling with molecular genetics, we show that boundary formation is dependent on cytokinin’s control on auxin polar transport and degradation. The regulation of both processes shapes the auxin profile in a well-defined auxin minimum. This auxin m...
<div><p>An auxin maximum is positioned along the xylem axis of the <i>Arabidopsis</i> root tip. The ...
The Arabidopsis root offers good opportunities to investigate how regulated cellular growth shapes d...
The phytohormone auxin is implied in steering various developmental decisions during plant morphogen...
In multicellular organisms, a stringent control of the transition between cell division and differen...
Root growth and development in Arabidopsis thaliana are sustained by a specialised zone termed the m...
SummaryBackgroundIn the root apical meristem, which contains the stem cells that feed into root deve...
Root growth and development in Arabidopsis thaliana are sustained by a specialised zone termed the m...
Coordination of cell division and pattern formation is central to tissue and organ development, part...
Background: In plant roots, auxin is critical for patterning and morphogenesis. It regulates cell el...
The growth of the root of Arabidopsis thaliana is sustained by the meristem, a region of cell prolif...
Plant growth and development are sustained by meristems. Meristem activity is controlled by auxin an...
SummaryPlant postembryonic development takes place in the meristems, where stem cells self-renew and...
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...
An auxin maximum is positioned along the xylem axis of the Arabidopsis root tip. The pattern depends...
<div><p>An auxin maximum is positioned along the xylem axis of the <i>Arabidopsis</i> root tip. The ...
The Arabidopsis root offers good opportunities to investigate how regulated cellular growth shapes d...
The phytohormone auxin is implied in steering various developmental decisions during plant morphogen...
In multicellular organisms, a stringent control of the transition between cell division and differen...
Root growth and development in Arabidopsis thaliana are sustained by a specialised zone termed the m...
SummaryBackgroundIn the root apical meristem, which contains the stem cells that feed into root deve...
Root growth and development in Arabidopsis thaliana are sustained by a specialised zone termed the m...
Coordination of cell division and pattern formation is central to tissue and organ development, part...
Background: In plant roots, auxin is critical for patterning and morphogenesis. It regulates cell el...
The growth of the root of Arabidopsis thaliana is sustained by the meristem, a region of cell prolif...
Plant growth and development are sustained by meristems. Meristem activity is controlled by auxin an...
SummaryPlant postembryonic development takes place in the meristems, where stem cells self-renew and...
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...
An auxin maximum is positioned along the xylem axis of the Arabidopsis root tip. The pattern depends...
<div><p>An auxin maximum is positioned along the xylem axis of the <i>Arabidopsis</i> root tip. The ...
The Arabidopsis root offers good opportunities to investigate how regulated cellular growth shapes d...
The phytohormone auxin is implied in steering various developmental decisions during plant morphogen...