Synchronized tissue polarization during regeneration or de novo vascular tissue formation is a plant-specific example of intercellular communication and coordinated development. According to the canalization hypothesis, the plant hormone auxin serves as polarizing signal that mediates directional channel formation underlying the spatio-temporal vasculature patterning. A necessary part of canalization is a positive feedback between auxin signaling and polarity of the intercellular auxin flow. The cellular and molecular mechanisms of this process are still poorly understood, not the least, because of a lack of a suitable model system. We show that the main genetic model plant, Arabidopsis (Arabidopsis thaliana) can be used to study the canali...
Several mechanisms have been proposed to explain the process of vein pattern formation in plant tiss...
[EN] Over time, plants have evolved flexible self-organizing patterning mechanisms to adapt tissue f...
Phytohormones have been implicated in vascular development in various ways, but their precise functi...
Synchronized tissue polarization during regeneration or de novo vascular tissue formation is a plant...
The flexible development of plants is characterized by a high capacity for post-embryonic organ form...
Plant survival depends on vascular tissues, which originate in a self‐organizing manner as strands o...
Plant survival depends on vascular tissues, which originate in a self-organizing manner as strands ...
Development of vascular tissue is a remarkable example of intercellular communication and coordinate...
Development of vascular tissue is a remarkable example of intercellular communication and coordinate...
Development of vascular tissue is a remarkable example of intercellular communication and coordinate...
Plant development is exceptionally flexible as manifested by its potential for organogenesis and reg...
Development of vascular tissue is a remarkable example of intercellular communication and coordinate...
Plant grafting is a biologically important phenomenon involving the physical joining of two plants ...
Plant development is exceptionally flexible as manifested by its potential for organogenesis and rege...
Plant grafting is an ancient and agriculturally important technique. Despite its widespread use, lit...
Several mechanisms have been proposed to explain the process of vein pattern formation in plant tiss...
[EN] Over time, plants have evolved flexible self-organizing patterning mechanisms to adapt tissue f...
Phytohormones have been implicated in vascular development in various ways, but their precise functi...
Synchronized tissue polarization during regeneration or de novo vascular tissue formation is a plant...
The flexible development of plants is characterized by a high capacity for post-embryonic organ form...
Plant survival depends on vascular tissues, which originate in a self‐organizing manner as strands o...
Plant survival depends on vascular tissues, which originate in a self-organizing manner as strands ...
Development of vascular tissue is a remarkable example of intercellular communication and coordinate...
Development of vascular tissue is a remarkable example of intercellular communication and coordinate...
Development of vascular tissue is a remarkable example of intercellular communication and coordinate...
Plant development is exceptionally flexible as manifested by its potential for organogenesis and reg...
Development of vascular tissue is a remarkable example of intercellular communication and coordinate...
Plant grafting is a biologically important phenomenon involving the physical joining of two plants ...
Plant development is exceptionally flexible as manifested by its potential for organogenesis and rege...
Plant grafting is an ancient and agriculturally important technique. Despite its widespread use, lit...
Several mechanisms have been proposed to explain the process of vein pattern formation in plant tiss...
[EN] Over time, plants have evolved flexible self-organizing patterning mechanisms to adapt tissue f...
Phytohormones have been implicated in vascular development in various ways, but their precise functi...