Conditioning small groups of root pericycle cells for future lateral root formation has a major impact on overall plant root architecture. This priming of lateral roots occurs rhythmically, involving temporal oscillations in auxin response in the root tip. During growth, this process generates a spatial pattern of prebranch sites, an early stage in lateral root formation characterized by a stably maintained high auxin response. To date, the molecular mechanism behind this rhythmicity has remained elusive. Some data implicate a cell-autonomous oscillation in gene expression, while others strongly support the importance of tissue-level modulations in auxin fluxes. Here, we summarize the experimental data on periodic lateral root priming. We p...
In Arabidopsis, the root clock regulates the spacing of lateral organs along the primary root throug...
The mechanisms that pattern lateral root primordial are essential for the elaboration of root system...
The formation of root lateral organ formation typically requires the de novo generation of a primord...
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...
Modular, repetitive structures are a key component of complex multicellular body plans across the tr...
Priming is the process through which periodic elevations in auxin signalling prepattern future sites...
The locations in which lateral roots arise are determined by local peaks of auxin response driven by...
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...
In plants, the developmental mechanisms that regulate the positioning of lateral organs along the pr...
Plants explore the soil by continuously expanding their root system, a process that depends on the p...
The spacing of lateral roots (LRs) along the main root in plants is driven by an oscillatory signal,...
Plant growth relies heavily on a root system that is hidden belowground, which develops post-embryon...
The plant hormone auxin plays a crucial role in the upstream regulation of many processes, making th...
In Arabidopsis, the root clock regulates the spacing of lateral organs along the primary root throug...
The mechanisms that pattern lateral root primordial are essential for the elaboration of root system...
The formation of root lateral organ formation typically requires the de novo generation of a primord...
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...
Modular, repetitive structures are a key component of complex multicellular body plans across the tr...
Priming is the process through which periodic elevations in auxin signalling prepattern future sites...
The locations in which lateral roots arise are determined by local peaks of auxin response driven by...
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...
In plants, the developmental mechanisms that regulate the positioning of lateral organs along the pr...
Plants explore the soil by continuously expanding their root system, a process that depends on the p...
The spacing of lateral roots (LRs) along the main root in plants is driven by an oscillatory signal,...
Plant growth relies heavily on a root system that is hidden belowground, which develops post-embryon...
The plant hormone auxin plays a crucial role in the upstream regulation of many processes, making th...
In Arabidopsis, the root clock regulates the spacing of lateral organs along the primary root throug...
The mechanisms that pattern lateral root primordial are essential for the elaboration of root system...
The formation of root lateral organ formation typically requires the de novo generation of a primord...