Studies on the model plant Arabidopsis have led to the common view that lateral roots are exclusively formed from pericycle cells and that the latter are unique in their ability to be reprogrammed into stem cells. By analysing lateral root formation in an evolutionary context, we show that lateral root primordium formation in which cortex, endodermis and pericycle are mitotically activated, is a common and ancestral trait in seed plants, whereas the exclusive involvement of pericycle evolved in the Brassicaceae. Furthermore, the endodermis can also be reprogrammed into stem cells in some species
Plant growth relies heavily on a root system that is hidden belowground, which develops post-embryon...
In Arabidopsis thaliana, lateral-root-forming competence of pericycle cells is associated with their...
Lateral root initiation is a post-embryonic process that requires the specification of a subset of p...
Studies on the model plant Arabidopsis have led to the common view that lateral roots are exclusivel...
Studies on the model plant Arabidopsis have led to the common view that lateral roots (LR) are exclu...
Root branching happens through the formation of new meristems out of a limited number of pericycle c...
Digging into the limited literature on lateral root (LR) formation in early vascular plants, we came...
International audienceAbstract The outer tissues of dicotyledonous plant roots (i.e. epidermis, cort...
The outer tissues of dicotyledonous plant roots (i.e. epidermis, cortex, and endodermis) are clearly...
Osmotically driven turgor pressure of plant cells can be higher than that of a car tire. It puts tre...
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...
Lateral roots are determinants of plant root system architecture. Besides providing anchorage, they ...
International audienceLateral root initiation takes place deep within the parental root, requiring n...
Lateral roots are determinants of plant root system architecture. Besides providing anchorage, they ...
Plant growth relies heavily on a root system that is hidden belowground, which develops post-embryon...
In Arabidopsis thaliana, lateral-root-forming competence of pericycle cells is associated with their...
Lateral root initiation is a post-embryonic process that requires the specification of a subset of p...
Studies on the model plant Arabidopsis have led to the common view that lateral roots are exclusivel...
Studies on the model plant Arabidopsis have led to the common view that lateral roots (LR) are exclu...
Root branching happens through the formation of new meristems out of a limited number of pericycle c...
Digging into the limited literature on lateral root (LR) formation in early vascular plants, we came...
International audienceAbstract The outer tissues of dicotyledonous plant roots (i.e. epidermis, cort...
The outer tissues of dicotyledonous plant roots (i.e. epidermis, cortex, and endodermis) are clearly...
Osmotically driven turgor pressure of plant cells can be higher than that of a car tire. It puts tre...
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...
Lateral roots are determinants of plant root system architecture. Besides providing anchorage, they ...
International audienceLateral root initiation takes place deep within the parental root, requiring n...
Lateral roots are determinants of plant root system architecture. Besides providing anchorage, they ...
Plant growth relies heavily on a root system that is hidden belowground, which develops post-embryon...
In Arabidopsis thaliana, lateral-root-forming competence of pericycle cells is associated with their...
Lateral root initiation is a post-embryonic process that requires the specification of a subset of p...