International audienceTo sustain a lifelong ability to initiate organs, plants retain pools of undifferentiated cells with a preserved proliferation capacity. The root pericycle represents a unique tissue with conditional meristematic activity, and its tight control determines initiation of lateral organs. Here we show that the meristematic activity of the pericycle is constrained by the interaction with the adjacent endodermis. Release of these restraints by elimination of endodermal cells by single-cell ablation triggers the pericycle to re-enter the cell cycle. We found that endodermis removal substitutes for the phytohormone auxin-dependent initiation of the pericycle meristematic activity. However, auxin is indispensable to steer the c...
In plants, the developmental mechanisms that regulate the positioning of lateral organs along the pr...
How plant cells re-establish differential growth to initiate organs is poorly understood. Morphogene...
Studies on the model plant Arabidopsis have led to the common view that lateral roots (LR) are exclu...
International audienceTo sustain a lifelong ability to initiate organs, plants retain pools of undif...
To sustain a lifelong ability to initiate organs, plants retain pools of undifferentiated cells with...
Plant growth relies heavily on a root system that is hidden belowground, which develops post-embryon...
Lateral root (LR) formation is initiated when pericycle cells accumulate auxin, thereby acquiring fo...
Lateral root formation can be divided into two major phases: pericycle activation and meristem estab...
Root branching happens through the formation of new meristems out of a limited number of pericycle c...
In Arabidopsis thaliana, lateral-root-forming competence of pericycle cells is associated with their...
In plants, postembryonic formation of new organs helps shape the adult organism. This requires the t...
To study the mechanisms behind auxin-induced cell division, lateral root initiation was used as a mo...
Studies on the model plant Arabidopsis have led to the common view that lateral roots are exclusivel...
Plants exhibit an exceptional adaptability to different environmental conditions. To a large extent,...
The plant hormone auxin plays a crucial role in the upstream regulation of many processes, making th...
In plants, the developmental mechanisms that regulate the positioning of lateral organs along the pr...
How plant cells re-establish differential growth to initiate organs is poorly understood. Morphogene...
Studies on the model plant Arabidopsis have led to the common view that lateral roots (LR) are exclu...
International audienceTo sustain a lifelong ability to initiate organs, plants retain pools of undif...
To sustain a lifelong ability to initiate organs, plants retain pools of undifferentiated cells with...
Plant growth relies heavily on a root system that is hidden belowground, which develops post-embryon...
Lateral root (LR) formation is initiated when pericycle cells accumulate auxin, thereby acquiring fo...
Lateral root formation can be divided into two major phases: pericycle activation and meristem estab...
Root branching happens through the formation of new meristems out of a limited number of pericycle c...
In Arabidopsis thaliana, lateral-root-forming competence of pericycle cells is associated with their...
In plants, postembryonic formation of new organs helps shape the adult organism. This requires the t...
To study the mechanisms behind auxin-induced cell division, lateral root initiation was used as a mo...
Studies on the model plant Arabidopsis have led to the common view that lateral roots are exclusivel...
Plants exhibit an exceptional adaptability to different environmental conditions. To a large extent,...
The plant hormone auxin plays a crucial role in the upstream regulation of many processes, making th...
In plants, the developmental mechanisms that regulate the positioning of lateral organs along the pr...
How plant cells re-establish differential growth to initiate organs is poorly understood. Morphogene...
Studies on the model plant Arabidopsis have led to the common view that lateral roots (LR) are exclu...