The abiotic stress response in plants is complex and tightly controlled by gene regulation. We present an abiotic stress gene regulatory network of 200,014 interactions for 11,938 target genes by integrating four complementary reverse-engineering solutions through average rank aggregation on an Arabidopsis thaliana microarray expression compendium. This ensemble performed the most robustly in benchmarking and greatly expands upon the availability of interactions currently reported. Besides recovering 1182 known regulatory interactions, cis-regulatory motifs and coherent functionalities of target genes corresponded with the predicted transcription factors. We provide a valuable resource of 572 abiotic stress modules of coregulated genes with...
Plants have established different mechanisms to cope with environmental fluctuations and accordingly...
International audienceBACKGROUND: Understanding the molecular mechanisms plants have evolved to adap...
International audienceBACKGROUND: Understanding the molecular mechanisms plants have evolved to adap...
The abiotic stress response in plants is complex and tightly controlled by gene regulation. We prese...
The abiotic stress response in plants is complex and tightly controlled by gene regulation. We prese...
Gene regulation is a dynamic process in which transcription factors (TFs) play an important role in ...
International audienceBACKGROUND: Understanding the molecular mechanisms plants have evolved to adap...
Understanding the global abiotic stress response is an important stepping stone for the development ...
Differentially evolved responses to various stress conditions in plants are controlled by complex re...
Understanding the relationships between transcription factors (TFs) and genes in plants under abioti...
Numerous studies have shown that transcription factors are important in regulating plant responses t...
BACKGROUND: In order to comprehend the mechanisms of induced plant defense, knowledge of the biosynt...
Intricate signal networks and transcriptional regulators translate the recognition of pathogens into...
Intricate signal networks and transcriptional regulators translate the recognition of pathogens into...
<div><p>Intricate signal networks and transcriptional regulators translate the recognition of pathog...
Plants have established different mechanisms to cope with environmental fluctuations and accordingly...
International audienceBACKGROUND: Understanding the molecular mechanisms plants have evolved to adap...
International audienceBACKGROUND: Understanding the molecular mechanisms plants have evolved to adap...
The abiotic stress response in plants is complex and tightly controlled by gene regulation. We prese...
The abiotic stress response in plants is complex and tightly controlled by gene regulation. We prese...
Gene regulation is a dynamic process in which transcription factors (TFs) play an important role in ...
International audienceBACKGROUND: Understanding the molecular mechanisms plants have evolved to adap...
Understanding the global abiotic stress response is an important stepping stone for the development ...
Differentially evolved responses to various stress conditions in plants are controlled by complex re...
Understanding the relationships between transcription factors (TFs) and genes in plants under abioti...
Numerous studies have shown that transcription factors are important in regulating plant responses t...
BACKGROUND: In order to comprehend the mechanisms of induced plant defense, knowledge of the biosynt...
Intricate signal networks and transcriptional regulators translate the recognition of pathogens into...
Intricate signal networks and transcriptional regulators translate the recognition of pathogens into...
<div><p>Intricate signal networks and transcriptional regulators translate the recognition of pathog...
Plants have established different mechanisms to cope with environmental fluctuations and accordingly...
International audienceBACKGROUND: Understanding the molecular mechanisms plants have evolved to adap...
International audienceBACKGROUND: Understanding the molecular mechanisms plants have evolved to adap...