Lateral root (LR) emergence represents a highly coordinated process in which the plant hormone auxin plays a central role. Reactive oxygen species (ROS) have been proposed to function as important signals during auxin-regulated LR formation; however, their mode of action is poorly understood. Here, we report that Arabidopsis roots exposed to ROS show increased LR numbers due to the activation of LR pre-branch sites and LR primordia (LRP). Strikingly, ROS treatment can also restore LR formation in pCASP1:shy2-2 and aux1 lax3 mutant lines in which auxin-mediated cell wall accommodation and remodeling in cells overlying the sites of LR formation is disrupted. Specifically, ROS are deposited in the apoplast of these cells during LR emergence, f...
Reactive oxygen species (ROS) are produced by metabolic pathways in almost all cells. As signaling c...
Overall root architecture is the combined result of primary and lateral root growth and is influence...
International audienceSignificance Tip-growing root hairs are an excellent model system for decipher...
Lateral root (LR) emergence represents a highly coordinated process in which the plant hormone auxin...
Plant roots are required to anchor the plant in the soil, acquire water and nutrients and respond to...
As non-photosynthesizing organs, roots are dependent on diffusion of oxygen from the external enviro...
<div><p>Although research has determined that reactive oxygen species (ROS) function as signaling mo...
Recent studies in the model plant Arabidopsis provide new insight into the regulation of root archit...
Underground roots normally reside in darkness. However, they are often exposed to ambient light that...
Root systems can display variable architectures that contribute to survival strategies of plants. Th...
The accumulation and redistribution of the plant hormone auxin plays a crucial role in root developm...
The accumulation and redistribution of the plant hormone auxin plays a crucial role in root developm...
Reactive oxygen species (ROS) are produced by metabolic pathways in almost all cells. As signaling c...
Overall root architecture is the combined result of primary and lateral root growth and is influence...
International audienceSignificance Tip-growing root hairs are an excellent model system for decipher...
Lateral root (LR) emergence represents a highly coordinated process in which the plant hormone auxin...
Plant roots are required to anchor the plant in the soil, acquire water and nutrients and respond to...
As non-photosynthesizing organs, roots are dependent on diffusion of oxygen from the external enviro...
<div><p>Although research has determined that reactive oxygen species (ROS) function as signaling mo...
Recent studies in the model plant Arabidopsis provide new insight into the regulation of root archit...
Underground roots normally reside in darkness. However, they are often exposed to ambient light that...
Root systems can display variable architectures that contribute to survival strategies of plants. Th...
The accumulation and redistribution of the plant hormone auxin plays a crucial role in root developm...
The accumulation and redistribution of the plant hormone auxin plays a crucial role in root developm...
Reactive oxygen species (ROS) are produced by metabolic pathways in almost all cells. As signaling c...
Overall root architecture is the combined result of primary and lateral root growth and is influence...
International audienceSignificance Tip-growing root hairs are an excellent model system for decipher...