Understanding how hormones and genes interact to coordinate plant growth is a major challenge in developmental biology. The activities of auxin, ethylene, and cytokinin depend on cellular context and exhibit either synergistic or antagonistic interactions. Here we use experimentation and network construction to elucidate the role of the interaction of the POLARIS peptide (PLS) and the auxin efflux carrier PIN proteins in the crosstalk of three hormones (auxin, ethylene, and cytokinin) in Arabidopsis root development. In ethylene hypersignaling mutants such as polaris (Os), we show experimentally that expression of both PIN1 and PIN2 significantly increases. This relationship is analyzed in the context of the crosstalk between auxin, ethylen...
Plant development is governed by signaling molecules called phytohormones. Typically, in certain dev...
Plant growth and development are regulated by small signaling molecules called plant hormones. Plant...
Plant hormone auxin and its transport between cells belong to the most important mechanisms controll...
Understanding how hormones and genes interact to coordinate plant growth is a major challenge in dev...
Understanding how hormones and genes interact to coordinate plant growth is a major challenge in dev...
Plants are sessile organisms and therefore they must adapt their growth and architecture to a changi...
An important question in plant biology is how genes influence the crosstalk between hormones to regu...
Plants are sessile organisms and therefore they must adapt their growth and architecture to a changi...
Patterning in Arabidopsis root development is coordinated via a localized auxin concentration maximu...
The rate and plane of cell division and anisotropic cell growth are critical for plant development a...
Hormonal interactions are crucial for plant development. In Arabidopsis, cytokinins inhibit root gro...
SummaryThe plant hormones auxin and cytokinin mutually coordinate their activities to control variou...
Auxin and cytokinin are key endogenous regulators of plant development. Although cytokinin-mediated ...
The growth of the root of Arabidopsis thaliana is sustained by the meristem, a region of cell prolif...
The phytohormone auxin plays a major role in embryonic and postembryonic plant development. The temp...
Plant development is governed by signaling molecules called phytohormones. Typically, in certain dev...
Plant growth and development are regulated by small signaling molecules called plant hormones. Plant...
Plant hormone auxin and its transport between cells belong to the most important mechanisms controll...
Understanding how hormones and genes interact to coordinate plant growth is a major challenge in dev...
Understanding how hormones and genes interact to coordinate plant growth is a major challenge in dev...
Plants are sessile organisms and therefore they must adapt their growth and architecture to a changi...
An important question in plant biology is how genes influence the crosstalk between hormones to regu...
Plants are sessile organisms and therefore they must adapt their growth and architecture to a changi...
Patterning in Arabidopsis root development is coordinated via a localized auxin concentration maximu...
The rate and plane of cell division and anisotropic cell growth are critical for plant development a...
Hormonal interactions are crucial for plant development. In Arabidopsis, cytokinins inhibit root gro...
SummaryThe plant hormones auxin and cytokinin mutually coordinate their activities to control variou...
Auxin and cytokinin are key endogenous regulators of plant development. Although cytokinin-mediated ...
The growth of the root of Arabidopsis thaliana is sustained by the meristem, a region of cell prolif...
The phytohormone auxin plays a major role in embryonic and postembryonic plant development. The temp...
Plant development is governed by signaling molecules called phytohormones. Typically, in certain dev...
Plant growth and development are regulated by small signaling molecules called plant hormones. Plant...
Plant hormone auxin and its transport between cells belong to the most important mechanisms controll...