Priming is the process through which periodic elevations in auxin signalling prepattern future sites for lateral root formation, called prebranch sites. Thus far, the extent to which elevations in auxin concentration and/or auxin signalling are required for priming and prebranch site formation has remained a matter of debate. Recently, we discovered a reflux-and-growth mechanism for priming generating periodic elevations in auxin concentration that subsequently dissipate. Here, we reverse engineer a mechanism for prebranch site formation that translates these transient elevations into a persistent increase in auxin signalling, resolving the prior debate into a two-step process of auxin concentration-mediated initial signal and auxin signall...
The plant hormone auxin plays a crucial role in the upstream regulation of many processes, making th...
Root system architecture is an important determinant of below-ground resource capture and hence over...
Multiple plant developmental processes, such as lateral root development, depend on auxin distributi...
Priming is the process through which periodic elevations in auxin signalling prepattern future sites...
Conditioning small groups of root pericycle cells for future lateral root formation has a major impa...
Conditioning small groups of root pericycle cells for future lateral root formation has a major impa...
Conditioning small groups of root pericycle cells for future lateral root formation has a major impa...
The formation of root lateral organ formation typically requires the de novo generation of a primord...
Background: In plant roots, auxin is critical for patterning and morphogenesis. It regulates cell el...
Modular, repetitive structures are a key component of complex multicellular body plans across the tr...
canary grass coleoptiles to unilateral light, first demonstrated the existence of a moving signal th...
The establishment of a pre-pattern or competence to form new organs is a key feature of the postembr...
The establishment of a pre-pattern or competence to form new organs is a key feature of the postembr...
The plant hormone auxin is remarkable in its capacity to seemingly regulate all plant growth and dev...
DoctorThe phytohormone auxin is a key developmental signal in plants. Until now, only auxin percepti...
The plant hormone auxin plays a crucial role in the upstream regulation of many processes, making th...
Root system architecture is an important determinant of below-ground resource capture and hence over...
Multiple plant developmental processes, such as lateral root development, depend on auxin distributi...
Priming is the process through which periodic elevations in auxin signalling prepattern future sites...
Conditioning small groups of root pericycle cells for future lateral root formation has a major impa...
Conditioning small groups of root pericycle cells for future lateral root formation has a major impa...
Conditioning small groups of root pericycle cells for future lateral root formation has a major impa...
The formation of root lateral organ formation typically requires the de novo generation of a primord...
Background: In plant roots, auxin is critical for patterning and morphogenesis. It regulates cell el...
Modular, repetitive structures are a key component of complex multicellular body plans across the tr...
canary grass coleoptiles to unilateral light, first demonstrated the existence of a moving signal th...
The establishment of a pre-pattern or competence to form new organs is a key feature of the postembr...
The establishment of a pre-pattern or competence to form new organs is a key feature of the postembr...
The plant hormone auxin is remarkable in its capacity to seemingly regulate all plant growth and dev...
DoctorThe phytohormone auxin is a key developmental signal in plants. Until now, only auxin percepti...
The plant hormone auxin plays a crucial role in the upstream regulation of many processes, making th...
Root system architecture is an important determinant of below-ground resource capture and hence over...
Multiple plant developmental processes, such as lateral root development, depend on auxin distributi...