Polar transport-dependent local accumulation of auxin provides positional cues for multiple plant patterning processes. This directional auxin flow depends on the polar subcellular localization of the PIN auxin efflux regulators. Overexpression of the PINOID protein kinase induces a basal-to-apical shift in PIN localization, resulting in the toss of auxin gradients and strong defects in embryo and seedling roots. Conversely, pid loss of function induces an apical-to-basal. shift in PIN1 polar targeting at the inflorescence apex, accompanied by defective organogenesis. Our results show that a PINOID-dependent binary switch controls PIN polarity and mediates changes in auxin flow to create local gradients for patterning processes.Multidiscipl...
The phytohormone auxin is important for various aspects of plant growth and development. Local auxin...
Plant development displays an exceptional plasticity and adaptability that involves the dynamic, asy...
The periodic formation of plant organs such as leaves and flowers gives rise to intricate patterns t...
The plant hormone auxin plays a crucial role in regulating plant development and plant architecture....
The phytohormone auxin plays a major role in embryonic and postembryonic plant development. The temp...
In plants, cell polarity and tissue patterning are connected by intercellular flow of the phytohormo...
SummaryIn plants, cell polarity and tissue patterning are connected by intercellular flow of the phy...
Polar cell-to-cell transport of auxin by plasma membrane-localized PIN-FORMED (PIN) auxin efflux car...
SummaryThe plant hormones auxin and cytokinin mutually coordinate their activities to control variou...
The plant hormones auxin and cytokinin mutually coordinate their activities to control various aspec...
Axis formation occurs in plants, as in animals, during early embryogenesis. However, the underlying ...
Dynamically polarized membrane proteins define different cell boundaries and have an important role ...
Polar cell-to-cell transport of plant hormone auxin mediated by plasma membrane (PM)-localized PIN-F...
The directional distribution of the phytohormone auxin is essential for plant development. Direction...
Dynamically polarized membrane proteins define different cell boundaries and have an important role ...
The phytohormone auxin is important for various aspects of plant growth and development. Local auxin...
Plant development displays an exceptional plasticity and adaptability that involves the dynamic, asy...
The periodic formation of plant organs such as leaves and flowers gives rise to intricate patterns t...
The plant hormone auxin plays a crucial role in regulating plant development and plant architecture....
The phytohormone auxin plays a major role in embryonic and postembryonic plant development. The temp...
In plants, cell polarity and tissue patterning are connected by intercellular flow of the phytohormo...
SummaryIn plants, cell polarity and tissue patterning are connected by intercellular flow of the phy...
Polar cell-to-cell transport of auxin by plasma membrane-localized PIN-FORMED (PIN) auxin efflux car...
SummaryThe plant hormones auxin and cytokinin mutually coordinate their activities to control variou...
The plant hormones auxin and cytokinin mutually coordinate their activities to control various aspec...
Axis formation occurs in plants, as in animals, during early embryogenesis. However, the underlying ...
Dynamically polarized membrane proteins define different cell boundaries and have an important role ...
Polar cell-to-cell transport of plant hormone auxin mediated by plasma membrane (PM)-localized PIN-F...
The directional distribution of the phytohormone auxin is essential for plant development. Direction...
Dynamically polarized membrane proteins define different cell boundaries and have an important role ...
The phytohormone auxin is important for various aspects of plant growth and development. Local auxin...
Plant development displays an exceptional plasticity and adaptability that involves the dynamic, asy...
The periodic formation of plant organs such as leaves and flowers gives rise to intricate patterns t...