International audienceA large number of genes involved in lateral root (LR) organogenesis have been identified over the last decade using forward and reverse genetic approaches in Arabidopsis thaliana. Nevertheless, how these genes interact to form a LR regulatory network largely remains to be elucidated. In this study, we developed a time-delay correlation algorithm (TDCor) to infer the gene regulatory network (GRN) controlling LR primordium initiation and patterning in Arabidopsis from a time-series transcriptomic data set. The predicted network topology links the very early-activated genes involved in LR initiation to later expressed cell identity markers through a multistep genetic cascade exhibiting both positive and negative feedback ...
Multiple plant developmental processes, such as lateral root development, depend on auxin distributi...
The architecture of a plant's root system, established postembryonically, results from both coordina...
The transition from a quiescent dry seed to an actively growing photoautotrophic seedling is a compl...
International audienceA large number of genes involved in lateral root (LR) organogenesis have been ...
A large number of genes involved in lateral root (LR) organogenesis have been identified over the la...
Regulation of gene expression is crucial for organism growth, and it is one of the challenges in sys...
Lateral root initiation is a post-embryonic process that requires the specification of a subset of p...
International audienceAt the onset of lateral root initiation in Arabidopsis thaliana , the phytohor...
In Arabidopsis thaliana, lateral roots (LRs) initiate acropetally and their dynamic development form...
Lateral roots (LRs) are crucial for increasing the surface area of root systems to explore heterogen...
Lateral root (LR) formation is an important determinant of root system architecture. In Arabidopsis,...
Root systems can display variable architectures that contribute to survival strategies of plants. Th...
The transition from a quiescent dry seed to an actively growing photoautotrophic seedling is a compl...
The root system is fundamental for plant development, is crucial for overall plant growth and is rec...
Multiple plant developmental processes, such as lateral root development, depend on auxin distributi...
The architecture of a plant's root system, established postembryonically, results from both coordina...
The transition from a quiescent dry seed to an actively growing photoautotrophic seedling is a compl...
International audienceA large number of genes involved in lateral root (LR) organogenesis have been ...
A large number of genes involved in lateral root (LR) organogenesis have been identified over the la...
Regulation of gene expression is crucial for organism growth, and it is one of the challenges in sys...
Lateral root initiation is a post-embryonic process that requires the specification of a subset of p...
International audienceAt the onset of lateral root initiation in Arabidopsis thaliana , the phytohor...
In Arabidopsis thaliana, lateral roots (LRs) initiate acropetally and their dynamic development form...
Lateral roots (LRs) are crucial for increasing the surface area of root systems to explore heterogen...
Lateral root (LR) formation is an important determinant of root system architecture. In Arabidopsis,...
Root systems can display variable architectures that contribute to survival strategies of plants. Th...
The transition from a quiescent dry seed to an actively growing photoautotrophic seedling is a compl...
The root system is fundamental for plant development, is crucial for overall plant growth and is rec...
Multiple plant developmental processes, such as lateral root development, depend on auxin distributi...
The architecture of a plant's root system, established postembryonically, results from both coordina...
The transition from a quiescent dry seed to an actively growing photoautotrophic seedling is a compl...