The variability of shoot architecture in plants is striking and one of the most extreme examples of adaptive growth in higher organisms. Mediated by the differential activity of apical and lateral meristems, flexibility in stem growth essentially contributes to this variability. In spite of this importance, the regulation of major events in stem development is largely unexplored. Recently, however, novel approaches exploiting knowledge from root and leaf development are starting to shed light on molecular mechanisms that regulate this essential plant organ. In this review, we summarize our understanding of initial patterning events in stems, discuss prerequisites for the initiation of lateral stem growth and highlight the burning questions ...
Lateral roots are formed postembryonically and determine the final shape of the root system, a deter...
The developmental plasticity of organisms is a natural consequence of adaptation. Classical approach...
Osmotically driven turgor pressure of plant cells can be higher than that of a car tire. It puts tre...
The variability of shoot architecture in plants is striking and one of the most extreme examples of ...
SummaryThe origin of the stem is a major but poorly understood aspect of plant development, partly b...
The morphology of plants can be highly adaptive due to the plasticity governed by postembryonic dev...
The development of secondary vascular tissue enhances the transport capacity and mechanical strength...
The initiation of plant lateral organs from the shoot apical meristem (SAM) is closely associated wi...
Background: The production of a new lateral root from parental root primary tissues has been investi...
A plant's lateral structures, such as leaves, branches and flowers, literally hinge on the shoot axi...
Plants possess the rare capability to shape the own architecture according to biotic and abiotic sti...
Vascular tissue differentiation is essential to enable plant growth and follows well-structured and ...
Stem cell niches are critical elements of plant organs, supporting their design, growth and maintena...
What is fascinating in plants (true also in sessile animals such as corals and hydroids) is definite...
Pattern formation is typically controlled through the interaction between molecular signals within a...
Lateral roots are formed postembryonically and determine the final shape of the root system, a deter...
The developmental plasticity of organisms is a natural consequence of adaptation. Classical approach...
Osmotically driven turgor pressure of plant cells can be higher than that of a car tire. It puts tre...
The variability of shoot architecture in plants is striking and one of the most extreme examples of ...
SummaryThe origin of the stem is a major but poorly understood aspect of plant development, partly b...
The morphology of plants can be highly adaptive due to the plasticity governed by postembryonic dev...
The development of secondary vascular tissue enhances the transport capacity and mechanical strength...
The initiation of plant lateral organs from the shoot apical meristem (SAM) is closely associated wi...
Background: The production of a new lateral root from parental root primary tissues has been investi...
A plant's lateral structures, such as leaves, branches and flowers, literally hinge on the shoot axi...
Plants possess the rare capability to shape the own architecture according to biotic and abiotic sti...
Vascular tissue differentiation is essential to enable plant growth and follows well-structured and ...
Stem cell niches are critical elements of plant organs, supporting their design, growth and maintena...
What is fascinating in plants (true also in sessile animals such as corals and hydroids) is definite...
Pattern formation is typically controlled through the interaction between molecular signals within a...
Lateral roots are formed postembryonically and determine the final shape of the root system, a deter...
The developmental plasticity of organisms is a natural consequence of adaptation. Classical approach...
Osmotically driven turgor pressure of plant cells can be higher than that of a car tire. It puts tre...