Distribution of auxin within plant tissues is of great importance for developmental plasticity, including root gravitropic growth. Auxin flow is directed by the subcellular polar distribution and dynamic relocalisation of auxin transporters such as the PIN‐FORMED (PIN) efflux carriers, which can be influenced by the main natural plant auxin indole‐3‐acetic acid (IAA). Anthranilic acid (AA) is an important early precursor of IAA and previously published studies with AA analogues have suggested that AA may also regulate PIN localisation. Using Arabidopsis thaliana as a model species, we studied an AA‐deficient mutant displaying agravitropic root growth, treated seedlings with AA and AA analogues and transformed lines to over‐produce AA while ...
SummaryPIN-FORMED (PIN) protein-mediated auxin polar transport is critically important for developme...
The rate, polarity, and symmetry of the flow of the plant hormone auxin are determined by the polar ...
Arabidopsis actin-related protein ARP3 plays a role in amyloplast sedimentation and polar auxin redi...
Distribution of auxin within plant tissues is of great importance for developmental plasticity, incl...
Distribution of auxin within plant tissues is of great importance for developmental plasticity, incl...
Distribution of auxin within plant tissues is of great importance for developmental plasticity, incl...
International audiencePlants respond to gravitational force through directional growth along the gra...
International audiencePlants respond to gravitational force through directional growth along the gra...
International audiencePlants respond to gravitational force through directional growth along the gra...
In the root, the transport of auxin from the tip to the elongation zone, referred to here as shootwa...
International audiencePlants respond to gravitational force through directional growth along the gra...
Plants respond to gravitational force through directional growth along the gravity vector. Although ...
he plant hormone auxin affects many important aspects of plant growth and development. For example, ...
In the root, the transport of auxin from the tip to the elongation zone, referred to here as shootwa...
Auxins represent an important class of plant hormone that regulate plant development. Plants use spe...
SummaryPIN-FORMED (PIN) protein-mediated auxin polar transport is critically important for developme...
The rate, polarity, and symmetry of the flow of the plant hormone auxin are determined by the polar ...
Arabidopsis actin-related protein ARP3 plays a role in amyloplast sedimentation and polar auxin redi...
Distribution of auxin within plant tissues is of great importance for developmental plasticity, incl...
Distribution of auxin within plant tissues is of great importance for developmental plasticity, incl...
Distribution of auxin within plant tissues is of great importance for developmental plasticity, incl...
International audiencePlants respond to gravitational force through directional growth along the gra...
International audiencePlants respond to gravitational force through directional growth along the gra...
International audiencePlants respond to gravitational force through directional growth along the gra...
In the root, the transport of auxin from the tip to the elongation zone, referred to here as shootwa...
International audiencePlants respond to gravitational force through directional growth along the gra...
Plants respond to gravitational force through directional growth along the gravity vector. Although ...
he plant hormone auxin affects many important aspects of plant growth and development. For example, ...
In the root, the transport of auxin from the tip to the elongation zone, referred to here as shootwa...
Auxins represent an important class of plant hormone that regulate plant development. Plants use spe...
SummaryPIN-FORMED (PIN) protein-mediated auxin polar transport is critically important for developme...
The rate, polarity, and symmetry of the flow of the plant hormone auxin are determined by the polar ...
Arabidopsis actin-related protein ARP3 plays a role in amyloplast sedimentation and polar auxin redi...