Biological shapes are often produced by the iterative generation of repeated units. The mechanistic basis of such iteration is an area of intense investigation. Leaf development in the model plant Arabidopsis is one such example where the repeated generation of leaf margin protrusions, termed serrations, is a key feature of final shape. However, the regulatory logic underlying this process is unclear. Here, we use a combination of developmental genetics and computational modeling to show that serration development is the morphological read-out of a spatially distributed regulatory mechanism, which creates interspersed activity peaks of the growth-promoting hormone auxin and the CUP-SHAPED COTYLEDON2 (CUC2) transcription factor. This mechani...
International audienceThe study of the concerted action of hormones and transcription factors is fun...
An auxin maximum is positioned along the xylem axis of the Arabidopsis root tip. The pattern depends...
<div><p>The study of the concerted action of hormones and transcription factors is fundamental to un...
Biological shapes are often produced by the iterative generation of repeated units. The mechanistic ...
Biological shapes are often produced by the iterative generation of repeated units. The mechanistic ...
A key question in developmental biology is how form is generated. The model species Arabidopsis thal...
Leaf shape in Arabidopsis is modulated by patterning events in the margin that utilize a PIN-based a...
International audienceBoundary domains play important roles during morphogenesis in plants and anima...
Boundary domains play important roles during morphogenesis in plants and animals, but how they contr...
How a shape arises from the coordinated behavior of cells is one of the most fascinating questions i...
The developmental basis for the generation of divergent leaf forms is largely unknown. Here we inves...
Background: In plant roots, auxin is critical for patterning and morphogenesis. It regulates cell el...
The apical hook of dark-grown Arabidopsis seedlings is a simple structure that develops soon after g...
Root growth and development in Arabidopsis thaliana are sustained by a specialised zone termed the m...
The study of the concerted action of hormones and transcription factors is fundamental to understand...
International audienceThe study of the concerted action of hormones and transcription factors is fun...
An auxin maximum is positioned along the xylem axis of the Arabidopsis root tip. The pattern depends...
<div><p>The study of the concerted action of hormones and transcription factors is fundamental to un...
Biological shapes are often produced by the iterative generation of repeated units. The mechanistic ...
Biological shapes are often produced by the iterative generation of repeated units. The mechanistic ...
A key question in developmental biology is how form is generated. The model species Arabidopsis thal...
Leaf shape in Arabidopsis is modulated by patterning events in the margin that utilize a PIN-based a...
International audienceBoundary domains play important roles during morphogenesis in plants and anima...
Boundary domains play important roles during morphogenesis in plants and animals, but how they contr...
How a shape arises from the coordinated behavior of cells is one of the most fascinating questions i...
The developmental basis for the generation of divergent leaf forms is largely unknown. Here we inves...
Background: In plant roots, auxin is critical for patterning and morphogenesis. It regulates cell el...
The apical hook of dark-grown Arabidopsis seedlings is a simple structure that develops soon after g...
Root growth and development in Arabidopsis thaliana are sustained by a specialised zone termed the m...
The study of the concerted action of hormones and transcription factors is fundamental to understand...
International audienceThe study of the concerted action of hormones and transcription factors is fun...
An auxin maximum is positioned along the xylem axis of the Arabidopsis root tip. The pattern depends...
<div><p>The study of the concerted action of hormones and transcription factors is fundamental to un...