Projects per year
Abstract
The model Gram-negative plant pathogen Pseudomonas syringae utilises hundreds of
transcription factors (TFs) to regulate its functional processes, including virulence and
metabolic pathways that control its ability to infect host plants. Although the molecular
mechanisms of regulators have been studied for decades, a comprehensive understanding of
genome-wide TFs in Psph 1448A remains limited. Here, we investigated the binding
characteristics of 170 of 301 annotated TFs through ChIP-seq. Fifty-four TFs, 62 TFs and 147
TFs were identified in top-level, middle-level and bottom-level, reflecting multiple higher-order network structures and direction of information-flow. More than forty thousand TF-pairs were classified into 13 three-node submodules which revealed the regulatory diversity
of TFs in Psph 1448A regulatory network. We found that bottom-level TFs performed high coassociated scores to their target genes. Functional categories of TFs at three levels
encompassed various regulatory pathways. Three and 25 master TFs were identified to
involve in virulence and metabolic regulation, respectively. Evolutionary analysis and
topological modularity network revealed functional variability and various conservation of
TFs in P. syringae (Psph 1448A, Pst DC3000, Pss B728a and Psa C48). Overall, our findings
demonstrated the global transcriptional regulatory network of genome-wide TFs in Psph
1448A. This knowledge can advance the development of effective treatment and prevention
strategies for related infectious diseases.
| Original language | English |
|---|---|
| Publisher | eLife Sciences Publications |
| DOIs | |
| Publication status | Published - 2024 |
Publication series
| Name | eLife |
|---|---|
| Publisher | eLife Sciences Publications |
| ISSN (Print) | 2050-084X |
Funding
This study was supported by grants from the National Natural Science Foundation of China (31670127 and 31870116 to X.D.), General Research Funds of Hong Kong (21103018, 11101619, and 11102720 to X.D.). The funders had no role in study design, data collection, interpretation, or the decision to submit the work for publication.
RGC Funding Information
- RGC-funded
Fingerprint
Dive into the research topics of 'Architecture of genome-wide transcriptional regulatory network reveals dynamic functions and evolutionary trajectories in Pseudomonas syringae'. Together they form a unique fingerprint.Projects
- 3 Finished
-
GRF: Revealing Signaling Pathway of Novel Two-component System TsiRS in Regulating Virulence of Pseudomonas Syringae
DENG, X. (Principal Investigator / Project Coordinator) & Ji, Q. (Co-Investigator)
1/01/21 → 8/02/24
Project: Research
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GRF: Elucidating Molecular Mechanism and Signaling Pathway of Novel Protease System RhpPC in Regulating Pathogenicity of Pseudomonas Syringae
DENG, X. (Principal Investigator / Project Coordinator) & Ji, Q. (Co-Investigator)
1/01/20 → 14/12/23
Project: Research
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ECS: Unraveling the RhpRS-mediated Signaling Pathway of Type III Secretion System in Pseudomonas Syringae
DENG, X. (Principal Investigator / Project Coordinator)
1/01/19 → 7/12/22
Project: Research
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