Feedback and integration of information are of paramount importance for the robust functioning and dynamics of biological systems. In plant developmental biology, experimentation is increasingly combined with computational modeling to obtain a better understanding of how such regulatory interactions shape the systems’ behavior. Here we highlight experimental and modeling studies on feedback loops and integration mechanisms involved in plant development. These studies have substantially expanded our understanding of previously characterized gene regulatory networks (GRNs). In addition, they illustrate the pervasiveness of regulatory interactions between seemingly unrelated processes and levels of organization. Modelers in plant development w...
Gene regulatory networks (GRNs) provide a transformation function between the static genomic sequenc...
An important contribution of systems biology is the insight that biological systems depend on the fu...
During their life cycle plants undergo a wide variety of morphological and developmental changes. Im...
Feedback and integration of information are of paramount importance for the robust functioning and d...
Developmental processes are controlled by regulatory networks (GRNs), which are tightly coordinated ...
The Shoot Apical Meristem (SAM) of plants is the biological target for a mathematical modeling of de...
Gene regulatory networks (GRNs) offer an unprecedented view on the genomic control of developmental ...
Motivation: The use of computer models for the understanding of biomolecular systems is increasingly...
Genetic and genomic approaches in model organisms have advanced our understanding of root biology ov...
Plant responses to environmental and intrinsic signals are tightly controlled by multiple transcript...
The evolution of plants on land has produced a great diversity of organs, tissues, and cell types. M...
Plant development gives rise to a staggering complexity of morphological structures with different s...
The rise of developmental biology to the fore of modern biology can be traced back to the efforts of...
Abstract A gene regulatory network (GRN) describes the hierarchical relationship between transcripti...
62 Pags.- 1 Tab.- 2 Figs. The definitive version is available at: http://www.sciencedirect.com/scie...
Gene regulatory networks (GRNs) provide a transformation function between the static genomic sequenc...
An important contribution of systems biology is the insight that biological systems depend on the fu...
During their life cycle plants undergo a wide variety of morphological and developmental changes. Im...
Feedback and integration of information are of paramount importance for the robust functioning and d...
Developmental processes are controlled by regulatory networks (GRNs), which are tightly coordinated ...
The Shoot Apical Meristem (SAM) of plants is the biological target for a mathematical modeling of de...
Gene regulatory networks (GRNs) offer an unprecedented view on the genomic control of developmental ...
Motivation: The use of computer models for the understanding of biomolecular systems is increasingly...
Genetic and genomic approaches in model organisms have advanced our understanding of root biology ov...
Plant responses to environmental and intrinsic signals are tightly controlled by multiple transcript...
The evolution of plants on land has produced a great diversity of organs, tissues, and cell types. M...
Plant development gives rise to a staggering complexity of morphological structures with different s...
The rise of developmental biology to the fore of modern biology can be traced back to the efforts of...
Abstract A gene regulatory network (GRN) describes the hierarchical relationship between transcripti...
62 Pags.- 1 Tab.- 2 Figs. The definitive version is available at: http://www.sciencedirect.com/scie...
Gene regulatory networks (GRNs) provide a transformation function between the static genomic sequenc...
An important contribution of systems biology is the insight that biological systems depend on the fu...
During their life cycle plants undergo a wide variety of morphological and developmental changes. Im...