Lateral organ position along roots and shoots largely determines plant architecture, and depends on auxin distribution patterns. Determination of the underlying patterning mechanisms has hitherto been complicated because they operate during growth and division. Here, we show by experiments and computational modeling that curvature of the Arabidopsis root influences cell sizes, which, together with tissue properties that determine auxin transport, induces higher auxin levels in the pericycle cells on the outside of the curve. The abundance and position of the auxin transporters restricts this response to the zone competent for lateral root formation. The auxin import facilitator, AUX1, is up-regulated by auxin, resulting in additional local ...
Plant developmental plasticity relies on the activities of meristems, regions where stem cells conti...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
Lateral organ position along roots and shoots largely determines plant architecture, and depends on ...
Lateral organ position along roots and shoots largely determines plant architecture, and depends on ...
An auxin maximum is positioned along the xylem axis of the Arabidopsis root tip. The pattern depends...
Background: In plant roots, auxin is critical for patterning and morphogenesis. It regulates cell el...
Root system architecture is an important determinant of below-ground resource capture and hence over...
<div><p>An auxin maximum is positioned along the xylem axis of the <i>Arabidopsis</i> root tip. The ...
Auxin is a key regulator of plant growth and development. Within the root tip, auxin distribution pl...
In Arabidopsis, lateral roots originate from pericycle cells deep within the primary root. New later...
International audienceMorphogenesis during multicellular development is regulated by intercellular s...
Plant developmental plasticity relies on the activities of meristems, regions where stem cells conti...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
Lateral organ position along roots and shoots largely determines plant architecture, and depends on ...
Lateral organ position along roots and shoots largely determines plant architecture, and depends on ...
An auxin maximum is positioned along the xylem axis of the Arabidopsis root tip. The pattern depends...
Background: In plant roots, auxin is critical for patterning and morphogenesis. It regulates cell el...
Root system architecture is an important determinant of below-ground resource capture and hence over...
<div><p>An auxin maximum is positioned along the xylem axis of the <i>Arabidopsis</i> root tip. The ...
Auxin is a key regulator of plant growth and development. Within the root tip, auxin distribution pl...
In Arabidopsis, lateral roots originate from pericycle cells deep within the primary root. New later...
International audienceMorphogenesis during multicellular development is regulated by intercellular s...
Plant developmental plasticity relies on the activities of meristems, regions where stem cells conti...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...