AbstractArabidopsis plants carrying mutations in the PINOID (PID) gene have a pleiotropic shoot phenotype that mimics that of plants grown on auxin transport inhibitors or of plants mutant for the auxin efflux carrier PINFORMED (PIN), with defects in the formation of cotyledons, flowers, and floral organs. We have cloned PID and find that it is transiently expressed in the embryo and in initiating floral anlagen, demonstrating a specific role for PID in promoting primordium development. Constitutive expression of PID causes a phenotype in both shoots and roots that is similar to that of auxin-insensitive plants, implying that PID, which encodes a serine-threonine protein kinase, negatively regulates auxin signaling
Plants, are sessile organisms, have developed strategies to adapt to changes in their environment, i...
Plant development displays an exceptional plasticity and adaptability that involves the dynamic, asy...
The directional distribution of the phytohormone auxin is essential for plant development. Direction...
AbstractArabidopsis plants carrying mutations in the PINOID (PID) gene have a pleiotropic shoot phen...
In plants many developmental processes are regulated by auxin and its directional transport. PINOID ...
Polar cell-to-cell transport of auxin by plasma membrane-localized PIN-FORMED (PIN) auxin efflux car...
The phytohormone auxin plays a major role in embryonic and postembryonic plant development. The temp...
In view of their predominant sessile lifestyle, plants need to be able to adapt to changes in their ...
During Arabidopsis embryo development, cotyledon primordia are generated at transition stage from pr...
The temporal and spatial distribution of the auxin is determined by the polar subcellular localizati...
At early stages of Arabidopsis embryogenesis, the timely accumulation of phytohormone auxin in the f...
Polar transport-dependent local accumulation of auxin provides positional cues for multiple plant pa...
In the shoot apical meristem (SAM) of Arabidopsis, PIN1-dependent polar auxin transport (PAT) regula...
Polar cell-to-cell transport of plant hormone auxin mediated by plasma membrane (PM)-localized PIN-F...
International audienceThe development and morphology of vascular plants is critically determined by ...
Plants, are sessile organisms, have developed strategies to adapt to changes in their environment, i...
Plant development displays an exceptional plasticity and adaptability that involves the dynamic, asy...
The directional distribution of the phytohormone auxin is essential for plant development. Direction...
AbstractArabidopsis plants carrying mutations in the PINOID (PID) gene have a pleiotropic shoot phen...
In plants many developmental processes are regulated by auxin and its directional transport. PINOID ...
Polar cell-to-cell transport of auxin by plasma membrane-localized PIN-FORMED (PIN) auxin efflux car...
The phytohormone auxin plays a major role in embryonic and postembryonic plant development. The temp...
In view of their predominant sessile lifestyle, plants need to be able to adapt to changes in their ...
During Arabidopsis embryo development, cotyledon primordia are generated at transition stage from pr...
The temporal and spatial distribution of the auxin is determined by the polar subcellular localizati...
At early stages of Arabidopsis embryogenesis, the timely accumulation of phytohormone auxin in the f...
Polar transport-dependent local accumulation of auxin provides positional cues for multiple plant pa...
In the shoot apical meristem (SAM) of Arabidopsis, PIN1-dependent polar auxin transport (PAT) regula...
Polar cell-to-cell transport of plant hormone auxin mediated by plasma membrane (PM)-localized PIN-F...
International audienceThe development and morphology of vascular plants is critically determined by ...
Plants, are sessile organisms, have developed strategies to adapt to changes in their environment, i...
Plant development displays an exceptional plasticity and adaptability that involves the dynamic, asy...
The directional distribution of the phytohormone auxin is essential for plant development. Direction...