The plant hormone auxin plays a central role in growth and morphogenesis. In shoot apical meristems, auxin flux is polarized through its interplay with PIN proteins. Concentration-based mathematical models of the flux can explain some aspects of phyllotaxis for the L1 surface layer, where auxin accumulation points act as sinks and develop into primordia. The picture differs in the interior of the meristem, where the primordia act as auxin sources, leading to the initiation of the vascular system. Self-organization of the auxin flux involves large numbers of molecules and is difficult to treat by intuitive reasoning alone; mathematical models are therefore vital to understand these phenomena. We consider a leading computational model based o...
The plant hormone auxin is fundamental for plant growth, and its spatial distribution in plant tissu...
<div><p>An auxin maximum is positioned along the xylem axis of the <i>Arabidopsis</i> root tip. The ...
An auxin maximum is positioned along the xylem axis of the Arabidopsis root tip. The pattern depends...
The plant hormone auxin plays a central role in growth and morphogenesis. In shoot apical meristems,...
The vegetative hormone Auxin is involved in vascular tissues formation throughout the plant. Trans-m...
Plants continuously generate new organs through the activity of populations of stem cells called mer...
International audiencePlants continuously generate new organs through the activity of populations of...
International audiencePlants continuously generate new organs through the activity of populations of...
International audiencePlants continuously generate new organs through the activity of populations of...
International audiencePlants continuously generate new organs through the activity of populations of...
International audiencePlants continuously generate new organs through the activity of populations of...
International audiencePlants continuously generate new organs through the activity of populations of...
Plants continuously generate new organs through the activity of populations of stem cells called mer...
International audiencePlants continuously generate new organs through the activity of populations of...
International audiencePlants continuously generate new organs through the activity of populations of...
The plant hormone auxin is fundamental for plant growth, and its spatial distribution in plant tissu...
<div><p>An auxin maximum is positioned along the xylem axis of the <i>Arabidopsis</i> root tip. The ...
An auxin maximum is positioned along the xylem axis of the Arabidopsis root tip. The pattern depends...
The plant hormone auxin plays a central role in growth and morphogenesis. In shoot apical meristems,...
The vegetative hormone Auxin is involved in vascular tissues formation throughout the plant. Trans-m...
Plants continuously generate new organs through the activity of populations of stem cells called mer...
International audiencePlants continuously generate new organs through the activity of populations of...
International audiencePlants continuously generate new organs through the activity of populations of...
International audiencePlants continuously generate new organs through the activity of populations of...
International audiencePlants continuously generate new organs through the activity of populations of...
International audiencePlants continuously generate new organs through the activity of populations of...
International audiencePlants continuously generate new organs through the activity of populations of...
Plants continuously generate new organs through the activity of populations of stem cells called mer...
International audiencePlants continuously generate new organs through the activity of populations of...
International audiencePlants continuously generate new organs through the activity of populations of...
The plant hormone auxin is fundamental for plant growth, and its spatial distribution in plant tissu...
<div><p>An auxin maximum is positioned along the xylem axis of the <i>Arabidopsis</i> root tip. The ...
An auxin maximum is positioned along the xylem axis of the Arabidopsis root tip. The pattern depends...