Plants have a distinctive mode of continuous development, involving the repeated initiation and growth of new organs throughout the lifespan of the organism. Their sessile nature means that this growth must be responsive not only to developmental cues but also to changes in the prevailing conditions. Since almost all growth ultimately derives from the process of cell division, the control of the cell cycle is at the heart of understanding patterning, growth, and development in plants. The unique features of plant development are reflected in distinct modes and molecular mechanisms of cell cycle control, using underpinning conserved control modules in distinct ways. The development of our understanding of these distinct aspects of plant cell...
AbstractOverexpression in transgenic plants of a B-type cyclin – thought to regulate cell-cycle pro...
Growth and development of plants are driven by the continuous production of new cells at the meriste...
AbstractCell cycling plays an important role in plant development, including: (1) organ morphogenesi...
Plants have a distinctive mode of continuous development, involving the repeated initiation and grow...
Plant growth and proliferation control is coming into a global focus due to recent ecological and ec...
Plant growth and proliferation control is coming into a global focus due to recent ecological and ec...
Cell cycle regulation is of pivotal importance for plant growth and development. Although plant cell...
In the recent years many studies contributed to our understanding of the mechanisms that drives the ...
The growth of organs and whole plants depends on both cell growth and cell-cycle progression, but th...
Plant growth is characterised both by continued growth and organogenesis throughout development, as ...
The cell cycle is driven by the activity of cyclin-dependent kinase (CDK)–cyclin complexes. Therefor...
Cell cycle activity is required for plant growth and development, but its involvement in the early e...
Mean cell size at division is generally constant for specific conditions and cell types, but the mec...
AbstractCell division is intimately intertwined with plant development, and the mechanisms that link...
The reiterative organogenesis that drives plant growth relies on the constant production of new cell...
AbstractOverexpression in transgenic plants of a B-type cyclin – thought to regulate cell-cycle pro...
Growth and development of plants are driven by the continuous production of new cells at the meriste...
AbstractCell cycling plays an important role in plant development, including: (1) organ morphogenesi...
Plants have a distinctive mode of continuous development, involving the repeated initiation and grow...
Plant growth and proliferation control is coming into a global focus due to recent ecological and ec...
Plant growth and proliferation control is coming into a global focus due to recent ecological and ec...
Cell cycle regulation is of pivotal importance for plant growth and development. Although plant cell...
In the recent years many studies contributed to our understanding of the mechanisms that drives the ...
The growth of organs and whole plants depends on both cell growth and cell-cycle progression, but th...
Plant growth is characterised both by continued growth and organogenesis throughout development, as ...
The cell cycle is driven by the activity of cyclin-dependent kinase (CDK)–cyclin complexes. Therefor...
Cell cycle activity is required for plant growth and development, but its involvement in the early e...
Mean cell size at division is generally constant for specific conditions and cell types, but the mec...
AbstractCell division is intimately intertwined with plant development, and the mechanisms that link...
The reiterative organogenesis that drives plant growth relies on the constant production of new cell...
AbstractOverexpression in transgenic plants of a B-type cyclin – thought to regulate cell-cycle pro...
Growth and development of plants are driven by the continuous production of new cells at the meriste...
AbstractCell cycling plays an important role in plant development, including: (1) organ morphogenesi...