Post-embryonic plant growth and development are sustained by meristems, a source of undifferentiated cells that give rise to the adult plant structures. Two hormones, cytokinin and auxin, are known to act antagonistically in controlling meristem activities. Here, we review recent significant progress in elucidating the molecular mechanisms through which these hormones interact to control specific aspects of plant development. For example, in the root meristem of Arabidopsis thaliana, cytokinin promotes cell differentiation by repressing both auxin signalling and transport, whereas auxin sustains root meristem activity by promoting cell division. The coordinated action of these two hormones is essential for maintaining root meristem size and...
Perhaps the most amazing feature of plants is their ability to grow and regenerate for years, someti...
A key question in plant developmental biology is how cell division and cell differentiation are bala...
Despite their relatively simple appearance, roots are incredibly complex organs that are highly adap...
Post-embryonic plant growth and development are sustained by meristems, a source of undifferentiated...
Plant development is governed by signaling molecules called phytohormones. Typically, in certain dev...
SummaryPlant postembryonic development takes place in the meristems, where stem cells self-renew and...
Plant postembryonic development takes place in the meristems, where stem cells self-renew and produc...
Plant postembryonic development takes place in the meristems, where stem cells self-renew and produc...
Root growth and development in Arabidopsis thaliana are sustained by a specialised zone termed the m...
Phytohormones are important plant growth regulators that control many developmental processes, such ...
Hormonal interactions are critical for plant development. In Arabidopsis, cytokinins inhibit root gr...
The root meristem is a group of stem cells at the root tip that give rise to differentiated root tis...
Plant growth and development are sustained by meristems. Meristem activity is controlled by auxin an...
The Arabidopsis root is a dynamic system where the interaction between different plant hormones cont...
In multicellular organisms, a stringent control of the transition between cell division and differen...
Perhaps the most amazing feature of plants is their ability to grow and regenerate for years, someti...
A key question in plant developmental biology is how cell division and cell differentiation are bala...
Despite their relatively simple appearance, roots are incredibly complex organs that are highly adap...
Post-embryonic plant growth and development are sustained by meristems, a source of undifferentiated...
Plant development is governed by signaling molecules called phytohormones. Typically, in certain dev...
SummaryPlant postembryonic development takes place in the meristems, where stem cells self-renew and...
Plant postembryonic development takes place in the meristems, where stem cells self-renew and produc...
Plant postembryonic development takes place in the meristems, where stem cells self-renew and produc...
Root growth and development in Arabidopsis thaliana are sustained by a specialised zone termed the m...
Phytohormones are important plant growth regulators that control many developmental processes, such ...
Hormonal interactions are critical for plant development. In Arabidopsis, cytokinins inhibit root gr...
The root meristem is a group of stem cells at the root tip that give rise to differentiated root tis...
Plant growth and development are sustained by meristems. Meristem activity is controlled by auxin an...
The Arabidopsis root is a dynamic system where the interaction between different plant hormones cont...
In multicellular organisms, a stringent control of the transition between cell division and differen...
Perhaps the most amazing feature of plants is their ability to grow and regenerate for years, someti...
A key question in plant developmental biology is how cell division and cell differentiation are bala...
Despite their relatively simple appearance, roots are incredibly complex organs that are highly adap...