We present a dynamical model of the gene network controlling flower development in Arabidopsis thaliana. The network is centered at the regulation of the floral organ identity genes (AP1, AP2, AP3, PI and AG) and ends with the transcription factor complexes responsible for differentiation of floral organs. We built and simulated the regulatory interactions that determine organ specificity using an extension of hybrid Petri nets as implemented in Cell Illustrator. The network topology is characterized by two main features: (1) the presence of multiple autoregulatory feedback loops requiring the formation of protein complexes, and (2) the role of spatial regulators determining floral patterning. The resulting network shows biologically cohere...
In this paper we propose a model to describe the mechanisms by which undifferentiated cells attain g...
<p>(A) The inflorescence meristem (IM in the Scanning Electron Micrography) is found at the apex of ...
In this paper we propose a model to describe the mechanisms by which undifferentiated cells attain g...
We present a dynamical model of the gene network controlling flower development in Arabidopsis thali...
Flowers are icons in developmental studies of complex structures. The vast majority of 250,000 angio...
Motivation: A large number of molecular mechanisms at the basis of gene regulation have been describ...
The formation of flowers is one of the main models for studying the regulatory mechanisms that unde...
Understanding how flowers develop from undifferentiated stem cells has occupied developmental biolog...
<p>(A) GRN with interactions inferred from experimental data (according to <a href="http://www.ploso...
Flower patterning is determined by a complex molecular network but how this network functions remain...
We have analyzed the link between the gene regulation and growth during the early stages of flower d...
Successful plant reproduction relies on the perfect orchestration of singular processes that culmina...
Successful plant reproduction relies on the perfect orchestration of singular processes that culmina...
Genes and proteins form complex dynamical sys-tems or gene regulatory networks (GRN) that can reach ...
In this paper we propose a model to describe the mechanisms by which undifferentiated cells attain g...
<p>(A) The inflorescence meristem (IM in the Scanning Electron Micrography) is found at the apex of ...
In this paper we propose a model to describe the mechanisms by which undifferentiated cells attain g...
We present a dynamical model of the gene network controlling flower development in Arabidopsis thali...
Flowers are icons in developmental studies of complex structures. The vast majority of 250,000 angio...
Motivation: A large number of molecular mechanisms at the basis of gene regulation have been describ...
The formation of flowers is one of the main models for studying the regulatory mechanisms that unde...
Understanding how flowers develop from undifferentiated stem cells has occupied developmental biolog...
<p>(A) GRN with interactions inferred from experimental data (according to <a href="http://www.ploso...
Flower patterning is determined by a complex molecular network but how this network functions remain...
We have analyzed the link between the gene regulation and growth during the early stages of flower d...
Successful plant reproduction relies on the perfect orchestration of singular processes that culmina...
Successful plant reproduction relies on the perfect orchestration of singular processes that culmina...
Genes and proteins form complex dynamical sys-tems or gene regulatory networks (GRN) that can reach ...
In this paper we propose a model to describe the mechanisms by which undifferentiated cells attain g...
<p>(A) The inflorescence meristem (IM in the Scanning Electron Micrography) is found at the apex of ...
In this paper we propose a model to describe the mechanisms by which undifferentiated cells attain g...