Plant survival depends on vascular tissues, which originate in a self-organizing manner as strands of cells co-directionally transporting the plant hormone auxin. The latter phenomenon (also known as auxin canalization) is classically hypothesized to be regulated by auxin itself via the effect of this hormone on the polarity of its own intercellular transport. Correlative observations supported this concept, but molecular insights remain limited. In the current study, we established an experimental system based on the model Arabidopsis thaliana, which exhibits auxin transport channels and formation of vasculature strands in response to local auxin application. Our methodology permits the genetic analysis of auxin canalization un...
Auxin is unique among plant hormones due to its directional transport that is mediated by the polarl...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
Auxin is an essential hormone for plant growth and development. Auxin influx carriers AUX1/LAX trans...
Plant survival depends on vascular tissues, which originate in a self‐organizing manner as strands o...
The flexible development of plants is characterized by a high capacity for post-embryonic organ form...
Synchronized tissue polarization during regeneration or de novo vascular tissue formation is a plant...
Plant development is exceptionally flexible as manifested by its potential for organogenesis and reg...
Directional transport of the phytohormone auxin is a versatile, plant-specific mechanism regulating ...
During embryogenesis and post-embryonic patterning, active transport of the phytohormone auxin, refl...
Plant hormone auxin and its transport between cells belong to the most important mechanisms controll...
Plant hormone auxin has critical roles in plant growth, dependent on its heterogeneous distribution ...
Plant development is exceptionally flexible as manifested by its potential for organogenesis and rege...
Self-organization is a hallmark of plant development manifested e.g. by intricate leaf vein patterns...
Auxin is unique among plant hormones due to its directional transport that is mediated by the polarl...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
Auxin is an essential hormone for plant growth and development. Auxin influx carriers AUX1/LAX trans...
Plant survival depends on vascular tissues, which originate in a self‐organizing manner as strands o...
The flexible development of plants is characterized by a high capacity for post-embryonic organ form...
Synchronized tissue polarization during regeneration or de novo vascular tissue formation is a plant...
Plant development is exceptionally flexible as manifested by its potential for organogenesis and reg...
Directional transport of the phytohormone auxin is a versatile, plant-specific mechanism regulating ...
During embryogenesis and post-embryonic patterning, active transport of the phytohormone auxin, refl...
Plant hormone auxin and its transport between cells belong to the most important mechanisms controll...
Plant hormone auxin has critical roles in plant growth, dependent on its heterogeneous distribution ...
Plant development is exceptionally flexible as manifested by its potential for organogenesis and rege...
Self-organization is a hallmark of plant development manifested e.g. by intricate leaf vein patterns...
Auxin is unique among plant hormones due to its directional transport that is mediated by the polarl...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
Auxin is an essential hormone for plant growth and development. Auxin influx carriers AUX1/LAX trans...