idopNetwork Analysis of Salt-Responsive Transcriptomes Reveals Hub Regulatory Modules and Genes in Populus euphratica
Shuang Wu, Wenqi Pan, Ang Dong

TL;DR
This study uses gene network analysis to uncover how Euphrates poplar responds to salt stress over time, identifying key regulatory genes and modules.
Contribution
The study introduces dynamic gene regulatory network analysis to reveal hub modules and genes in salt-stressed Euphrates poplar.
Findings
Module 4 was identified as the hub with the most genes under salt stress.
Gene XM_011048240.1 showed the most interactions in module 4.
Short-term stress promoted gene interactions, while long-term stress inhibited them.
Abstract
Euphrates poplar (Populus euphratica) is known as a system model to study the genomic mechanisms underlying the salt resistance of woody species. To characterize how dynamic gene regulatory networks (GRNs) drive the defense response of this species to salt stress, we performed mRNA sequencing of P. euphratica roots under short-term (ST) and long-term (LT) salt stress treatments across multiple time points. Comparisons of these transcriptomes revealed the diverged gene expression patterns between the ST and LT treated samples. Based on the informative, dynamic, omnidirectional, and personalized networks model (idopNetwork), inter- and intra-module networks were constructed across different time points for both the ST and LT groups. Through the analysis of the inter-module network, we identified module 4 as the hub, containing the largest number of genes. Further analysis of the gene…
Genes, proteins, chemicals, diseases, species, mutations and cell lines named across the full text — each resolved to its canonical identifier and authoritative record.
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Taxonomy
TopicsPlant Molecular Biology Research · Plant Reproductive Biology · Plant Stress Responses and Tolerance
