The plant hormone auxin and its directional transport are known to play a crucial role in defining the embryonic axis and subsequent development of the body plan. Although the role of PIN auxin efflux transporters has been clearly assigned during embryonic shoot and root specification, the role of the auxin influx carriers AUX1 and LIKE-AUX1 (LAX) proteins is not well established. Here, we used chemical and genetic tools on Brassica napus microspore-derived embryos and Arabidopsis thaliana zygotic embryos, and demonstrate that AUX1, LAX1 and LAX2 are required for both shoot and root pole formation, in concert with PIN efflux carriers. Furthermore, we uncovered a positive-feedback loop between MONOPTEROS (ARF5)-dependent auxin signalling and...
Isolated microspores are reprogrammed in vitro by stress, becoming totipotent cells and producing em...
Plant survival depends on vascular tissues, which originate in a self-organizing manner as strands ...
Plant auxin efflux and influx proteins redirect the plant hormone auxin towards the feeding site upo...
The plant hormone auxin and its directional transport are known to play a crucial role in defining t...
Auxin is a key regulator of plant growth and development. Within the root tip, auxin distribution pl...
Plant-specific PIN-formed (PIN) efflux transporters for the plant hormone auxin are required for tis...
nottingham.ac.uk Auxin regulates several aspects of plant growth and development. Auxin is unique am...
Plant-specific PIN-formed (PIN) efflux transporters for the plant hormone auxin are required for tis...
In Arabidopsis, lateral roots originate from pericycle cells deep within the primary root. New later...
Auxin transport, which is mediated by specialized influx and efflux carriers, plays a major role in ...
none2noIn plants, proper seed development and the continuing post-embryonic organogenesis both requi...
Polar auxin transport is a unique process mediating a wide variety of plant developmental processes....
n plants, proper seed development and the continuing post-embryonic organogenesis both require that ...
Plant survival depends on vascular tissues, which originate in a self‐organizing manner as strands o...
The plant hormone auxin (indole-3-acetic acid) is a major regulator of plant growth and development ...
Isolated microspores are reprogrammed in vitro by stress, becoming totipotent cells and producing em...
Plant survival depends on vascular tissues, which originate in a self-organizing manner as strands ...
Plant auxin efflux and influx proteins redirect the plant hormone auxin towards the feeding site upo...
The plant hormone auxin and its directional transport are known to play a crucial role in defining t...
Auxin is a key regulator of plant growth and development. Within the root tip, auxin distribution pl...
Plant-specific PIN-formed (PIN) efflux transporters for the plant hormone auxin are required for tis...
nottingham.ac.uk Auxin regulates several aspects of plant growth and development. Auxin is unique am...
Plant-specific PIN-formed (PIN) efflux transporters for the plant hormone auxin are required for tis...
In Arabidopsis, lateral roots originate from pericycle cells deep within the primary root. New later...
Auxin transport, which is mediated by specialized influx and efflux carriers, plays a major role in ...
none2noIn plants, proper seed development and the continuing post-embryonic organogenesis both requi...
Polar auxin transport is a unique process mediating a wide variety of plant developmental processes....
n plants, proper seed development and the continuing post-embryonic organogenesis both require that ...
Plant survival depends on vascular tissues, which originate in a self‐organizing manner as strands o...
The plant hormone auxin (indole-3-acetic acid) is a major regulator of plant growth and development ...
Isolated microspores are reprogrammed in vitro by stress, becoming totipotent cells and producing em...
Plant survival depends on vascular tissues, which originate in a self-organizing manner as strands ...
Plant auxin efflux and influx proteins redirect the plant hormone auxin towards the feeding site upo...