Regulation of gene expression via specific cis-regulatory promoter elements has evolved in cellular organisms as a major adaptive mechanism to respond to environmental change. Assuming a simple model of transcriptional regulation, genes that are differentially expressed in response to a large number of different external stimuli should harbor more distinct regulatory elements in their upstream regions than do genes that only respond to few environmental challenges. We tested this hypothesis in Arabidopsis thaliana using the compendium of gene expression profiling data available in AtGenExpress and known cis-element motifs mapped to upstream gene promoter regions and studied the relation of the observed breadth of differential gene expressio...
Plasticity allows organisms to respond to environmental change. Here the authors compare the distrib...
In higher eukaryotes, gene architecture and structural properties of promoters have emerged as signi...
Our understanding of gene regulation in plants is constrained by our limited knowledge of plant cis-...
Regulation of gene expression via specific cis-regulatory promoter elements has evolved in cellular ...
Differentially evolved responses to various stress conditions in plants are controlled by complex re...
Understanding the mechanisms underlying gene regulation is paramount to comprehend the translation f...
Regulatory regions of plant genes tend to be more compact than those of animal genes, but the comple...
Transcription factors (TFs) play key roles in both development and stress responses. By integrating ...
A fundamental question in biology is how gene expression is regulated to give rise to a phenotype. H...
Variation in regulatory DNA is thought to drive phenotypic variation, evolution, and disease. Prior ...
International audienceBACKGROUND: Understanding the molecular mechanisms plants have evolved to adap...
Regulatory regions of plant genes tend to be more compact than those of animal genes, but the comple...
In higher eukaryotes, gene architecture and structural properties of promoters have emerged as signi...
Regulatory regions of plant genes tend to be more compact than those of animal genes, but the comple...
The transcriptional effector domains of transcription factors play a key role in controlling gene ex...
Plasticity allows organisms to respond to environmental change. Here the authors compare the distrib...
In higher eukaryotes, gene architecture and structural properties of promoters have emerged as signi...
Our understanding of gene regulation in plants is constrained by our limited knowledge of plant cis-...
Regulation of gene expression via specific cis-regulatory promoter elements has evolved in cellular ...
Differentially evolved responses to various stress conditions in plants are controlled by complex re...
Understanding the mechanisms underlying gene regulation is paramount to comprehend the translation f...
Regulatory regions of plant genes tend to be more compact than those of animal genes, but the comple...
Transcription factors (TFs) play key roles in both development and stress responses. By integrating ...
A fundamental question in biology is how gene expression is regulated to give rise to a phenotype. H...
Variation in regulatory DNA is thought to drive phenotypic variation, evolution, and disease. Prior ...
International audienceBACKGROUND: Understanding the molecular mechanisms plants have evolved to adap...
Regulatory regions of plant genes tend to be more compact than those of animal genes, but the comple...
In higher eukaryotes, gene architecture and structural properties of promoters have emerged as signi...
Regulatory regions of plant genes tend to be more compact than those of animal genes, but the comple...
The transcriptional effector domains of transcription factors play a key role in controlling gene ex...
Plasticity allows organisms to respond to environmental change. Here the authors compare the distrib...
In higher eukaryotes, gene architecture and structural properties of promoters have emerged as signi...
Our understanding of gene regulation in plants is constrained by our limited knowledge of plant cis-...