Background: The presence of a polar auxin transport stream has long been correlated with the differentiation and patterning of vascular cells across vascular plants. As our understanding of auxin transport and vascular development has grown, so too has evidence for the correlation between these processes. However, a clear understanding of the cellular and molecular mechanisms driving this correlation has not been elucidated. Scope: This article examines the hypothesis that canalisation via polar auxin transport regulates vascular reconnection and patterning in the stem after wounding or grafting. We examine the evidence for the causal nature of the relationship and the suggested role that other hormones may play. Data are presented indica...
Permission is hereby granted to the University of Alberta Libraries to reproduce single copies of th...
Plant survival depends on vascular tissues, which originate in a self‐organizing manner as strands o...
Aerial organs of plants, being highly prone to local injuries, require tissue restoration to ensure ...
Background: The presence of a polar auxin transport stream has long been correlated with the differe...
When vascular bundles are broken, plants undergo a process of polar cellular re-differentiation that...
Synchronized tissue polarization during regeneration or de novo vascular tissue formation is a plant...
AbstractThe plant hormone auxin has long been known to play a pivotal role in vascular patterning an...
The plant vascular system provides transport and support capabilities that are essential for plant g...
Phytohormones have been implicated in vascular development in various ways, but their precise functi...
The flexible development of plants is characterized by a high capacity for post-embryonic organ form...
In 1969, Tsvi Sachs published his seminal hypothesis of vascular development in plants: the canaliza...
To provide a comparative framework to understand the evolution of auxin regulation in vascular plant...
The plant hormone auxin is frequently observed to be asymmetrically distributed across adjacent cell...
Several mechanisms have been proposed to explain the process of vein pattern formation in plant tiss...
The plant hormone auxin has long been known to play a pivotal role in vascular patterning and differ...
Permission is hereby granted to the University of Alberta Libraries to reproduce single copies of th...
Plant survival depends on vascular tissues, which originate in a self‐organizing manner as strands o...
Aerial organs of plants, being highly prone to local injuries, require tissue restoration to ensure ...
Background: The presence of a polar auxin transport stream has long been correlated with the differe...
When vascular bundles are broken, plants undergo a process of polar cellular re-differentiation that...
Synchronized tissue polarization during regeneration or de novo vascular tissue formation is a plant...
AbstractThe plant hormone auxin has long been known to play a pivotal role in vascular patterning an...
The plant vascular system provides transport and support capabilities that are essential for plant g...
Phytohormones have been implicated in vascular development in various ways, but their precise functi...
The flexible development of plants is characterized by a high capacity for post-embryonic organ form...
In 1969, Tsvi Sachs published his seminal hypothesis of vascular development in plants: the canaliza...
To provide a comparative framework to understand the evolution of auxin regulation in vascular plant...
The plant hormone auxin is frequently observed to be asymmetrically distributed across adjacent cell...
Several mechanisms have been proposed to explain the process of vein pattern formation in plant tiss...
The plant hormone auxin has long been known to play a pivotal role in vascular patterning and differ...
Permission is hereby granted to the University of Alberta Libraries to reproduce single copies of th...
Plant survival depends on vascular tissues, which originate in a self‐organizing manner as strands o...
Aerial organs of plants, being highly prone to local injuries, require tissue restoration to ensure ...