Lateral roots are formed postembryonically and determine the final shape of the root system, a determinant of the plants ability to uptake nutrients and water. The lateral root primordia are initiated deep into the main root and to protrude out the primary root they have to grow through three cell layers. Recent findings have revealed that these layers are not merely a passive physical obstacle to the emergence of the lateral root but have an active role in its formation. Here, we review examples of communication between the lateral root primordium and the surrounding tissues, highlighting the importance of auxin-mediated growth coordination as well as cell and tissue mechanics for the morphogenesis of lateral roots
The developmental plasticity of the root system represents a key adaptive trait enabling plants to c...
By forming lateral roots, plants expand their root systems to improve anchorage and absorb more wate...
Unlike locomotive organisms capable of actively approaching essential resources, sessile plants must...
Lateral roots are formed postembryonically and determine the final shape of the root system, a deter...
Osmotically driven turgor pressure of plant cells can be higher than that of a car tire. It puts tre...
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 ...
Lateral root formation is a major determinant of root systems architecture. The degree of root branc...
Lateral roots are determinants of plant root system architecture. Besides providing anchorage, they ...
Lateral root formation is a major determinant of root systems architecture. The degree of root branc...
International audienceLateral root formation is a major determinant of root systems architecture. Th...
The developmental plasticity of the root system represents a key adaptive trait enabling plants to c...
Root systems can display variable architectures that contribute to survival strategies of plants. Th...
The developmental plasticity of the root system represents a key adaptive trait enabling plants to c...
By forming lateral roots, plants expand their root systems to improve anchorage and absorb more wate...
Unlike locomotive organisms capable of actively approaching essential resources, sessile plants must...
Lateral roots are formed postembryonically and determine the final shape of the root system, a deter...
Osmotically driven turgor pressure of plant cells can be higher than that of a car tire. It puts tre...
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 ...
Lateral root formation is a major determinant of root systems architecture. The degree of root branc...
Lateral roots are determinants of plant root system architecture. Besides providing anchorage, they ...
Lateral root formation is a major determinant of root systems architecture. The degree of root branc...
International audienceLateral root formation is a major determinant of root systems architecture. Th...
The developmental plasticity of the root system represents a key adaptive trait enabling plants to c...
Root systems can display variable architectures that contribute to survival strategies of plants. Th...
The developmental plasticity of the root system represents a key adaptive trait enabling plants to c...
By forming lateral roots, plants expand their root systems to improve anchorage and absorb more wate...
Unlike locomotive organisms capable of actively approaching essential resources, sessile plants must...