High-resolution and automated image analysis of individual roots demonstrated that endogenous nitric oxide (NO) contribute significantly to gravitropism of Arabidopsis roots. Lowering of endogenous NO concentrations strongly reduced and even reversed gravitropism, resulting in upward bending, without affecting root growth rate. Notably, the asymmetric accumulation of NOalong the upper and lower sides of roots correlated with a positive gravitropic response. Detection of NO by the specific DAF-FM DA fluorescent probe revealed that NO was higher at the lower side of horizontally-oriented roots returning to initial values 2h after the onset of gravistimulation. We demonstrate that NO promotes plasma membrane re-localization of PIN2 in epiderma...
Lateral roots are typically maintained at non-vertical angles with respect to gravity. These gravitr...
Plant roots respond positively to gravity force and orientate it growth providing anchorage to the s...
Hormone patterns tailor cell fate decisions during plant organ formation. Among them, auxins and cyt...
<p>High-resolution and automated image analysis of individual roots demonstrated that endogenous nit...
<p>High-resolution and automated image analysis of individual roots demonstrated that endogenous nit...
<p>High-resolution and automated image analysis of individual roots demonstrated that endogenous nit...
<p>High-resolution and automated image analysis of individual roots demonstrated that endogenous nit...
<p>High-resolution and automated image analysis of individual roots demonstrated that endogenous nit...
<p>High-resolution and automated image analysis of individual roots demonstrated that endogenous nit...
In the root, the transport of auxin from the tip to the elongation zone, referred to here as shootwa...
Gravitropism is required for the appropriate alignment of the plant root and shoot. According to the...
Plant roots are gravitropic, detecting and responding to changes in orientation via differential gro...
Redirection of intercellular auxin fluxes via relocalization of the PIN-FORMED 3 (PIN3) and PIN7 aux...
Distribution of auxin within plant tissues is of great importance for developmental plasticity, incl...
Re-orientation of Arabidopsis seedlings induces a rapid, asymmetric release of the growth regulator ...
Lateral roots are typically maintained at non-vertical angles with respect to gravity. These gravitr...
Plant roots respond positively to gravity force and orientate it growth providing anchorage to the s...
Hormone patterns tailor cell fate decisions during plant organ formation. Among them, auxins and cyt...
<p>High-resolution and automated image analysis of individual roots demonstrated that endogenous nit...
<p>High-resolution and automated image analysis of individual roots demonstrated that endogenous nit...
<p>High-resolution and automated image analysis of individual roots demonstrated that endogenous nit...
<p>High-resolution and automated image analysis of individual roots demonstrated that endogenous nit...
<p>High-resolution and automated image analysis of individual roots demonstrated that endogenous nit...
<p>High-resolution and automated image analysis of individual roots demonstrated that endogenous nit...
In the root, the transport of auxin from the tip to the elongation zone, referred to here as shootwa...
Gravitropism is required for the appropriate alignment of the plant root and shoot. According to the...
Plant roots are gravitropic, detecting and responding to changes in orientation via differential gro...
Redirection of intercellular auxin fluxes via relocalization of the PIN-FORMED 3 (PIN3) and PIN7 aux...
Distribution of auxin within plant tissues is of great importance for developmental plasticity, incl...
Re-orientation of Arabidopsis seedlings induces a rapid, asymmetric release of the growth regulator ...
Lateral roots are typically maintained at non-vertical angles with respect to gravity. These gravitr...
Plant roots respond positively to gravity force and orientate it growth providing anchorage to the s...
Hormone patterns tailor cell fate decisions during plant organ formation. Among them, auxins and cyt...