SummaryCell polarity is commonly coordinated within the plane of a single tissue layer (planar polarity), and hair positioning has been exploited as a simple marker for planar polarization of animal epithelia [1]. The root epidermis of the plant Arabidopsis similarly reveals planar polarity of hair localization close to root tip-oriented (basal) ends of hair-forming cells [2–4]. Hair position is directed toward a concentration maximum of the hormone auxin in the root tip [4, 5], but mechanisms driving this plant-specific planar polarity remain elusive. Here, we report that combinatorial action of the auxin influx carrier AUX1[6, 7], ETHYLENE-INSENSITIVE2 (EIN2) [8], and GNOM[9] genes mediates the vector for coordinate hair positioning. In a...
Plant development is exceptionally flexible as manifested by its potential for organogenesis and reg...
Plant development is exceptionally flexible as manifested by its potential for organogenesis and rege...
Directionality of auxin transport is determined by polar localization of PIN-FORMED (PIN) proteins. ...
SummaryCell polarity is commonly coordinated within the plane of a single tissue layer (planar polar...
Coordination of cell and tissue polarity commonly involves directional signaling [1]. In the Arabido...
The coordination of cell polarity within the plane of the tissue layer (planar polarity) is crucial ...
The periodic formation of plant organs such as leaves and flowers gives rise to intricate patterns t...
The establishment of cell and tissue polarity is essential for the development of eukaryotic organis...
At the Arabidopsis shoot apex, epidermal cells are planar-polarized along an axis marked by the asym...
In the root, the transport of auxin from the tip to the elongation zone, referred to here as shootwa...
Dynamically polarized membrane proteins define different cell boundaries and have an important role ...
The plant hormone auxin is transported in a polar manner along the shoot-root axis, which requires e...
Dynamically polarized membrane proteins define different cell boundaries and have an important role ...
Axis formation occurs in plants, as in animals, during early embryogenesis. However, the underlying ...
International audienceThe shoot apical meristem (SAM) produces new aerial organs such as leaves and ...
Plant development is exceptionally flexible as manifested by its potential for organogenesis and reg...
Plant development is exceptionally flexible as manifested by its potential for organogenesis and rege...
Directionality of auxin transport is determined by polar localization of PIN-FORMED (PIN) proteins. ...
SummaryCell polarity is commonly coordinated within the plane of a single tissue layer (planar polar...
Coordination of cell and tissue polarity commonly involves directional signaling [1]. In the Arabido...
The coordination of cell polarity within the plane of the tissue layer (planar polarity) is crucial ...
The periodic formation of plant organs such as leaves and flowers gives rise to intricate patterns t...
The establishment of cell and tissue polarity is essential for the development of eukaryotic organis...
At the Arabidopsis shoot apex, epidermal cells are planar-polarized along an axis marked by the asym...
In the root, the transport of auxin from the tip to the elongation zone, referred to here as shootwa...
Dynamically polarized membrane proteins define different cell boundaries and have an important role ...
The plant hormone auxin is transported in a polar manner along the shoot-root axis, which requires e...
Dynamically polarized membrane proteins define different cell boundaries and have an important role ...
Axis formation occurs in plants, as in animals, during early embryogenesis. However, the underlying ...
International audienceThe shoot apical meristem (SAM) produces new aerial organs such as leaves and ...
Plant development is exceptionally flexible as manifested by its potential for organogenesis and reg...
Plant development is exceptionally flexible as manifested by its potential for organogenesis and rege...
Directionality of auxin transport is determined by polar localization of PIN-FORMED (PIN) proteins. ...