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Series GSE242455 Query DataSets for GSE242455
Status Public on Sep 19, 2024
Title H3K9ac-marked three-dimensional genome dynamics in rice under drought stress [ChIA-PET]
Organism Oryza sativa
Experiment type Other
Summary Drought stress response involves vigorous reprogramming of transcriptome while the mechanism modulating this process remains elusive. The role of 3D-genome in the regulation of rice development has recently been unveiled in rice, which exhibited characteristics distinct from that in mammals and other plants. However, the relationship between spatial chromosome organization and drought responsive gene reprogramming is still poorly understood. In this study, we identified H3K9ac as an efficient histone mark that response dynamically to drought stress in rice and re-constructed high-resolution 3D genome contact maps based on these sites under the normal, drought, and recovery conditions. We discovered significant decondensation of chromatin contacts with over 10000 chromatin loops lost upon drought stress treatment while the recovery of 3D genome was limited after 4-day’s re-watering. We identified dominate promoter-promoter interacting (PPI) loops under each condition and identified their significant correlations to altered gene expressions in response to the corresponding condition. Based on the relative contact intensities of the PPI connections, we characterized super-promoter regions that integrate closer connections of genes with more vigorous inductions to condition shifts. Especially, about 75% of the drought stress-dominate PPI loops were associated to the binding by a well-defined drought stress-responsive transcription factor, OsbZIP23. The mutation of OsbZIP23 led to the diffuse of over 80% DS-dominate PPI loops and impaired the expression of the connected genes. As a case study, we showed how OsbZIP23 binding to a super-promoter region can integrate the PPI loop formation and transcriptional activation of four function-vital dehydrin genes upon drought stress. Our results shed light on the mechanisms of 3D genome dynamic in response to water supply variations in rice and highlight the role of OsbZIP23 in the regulation of chromatin loop formation under drought stress.
 
Overall design This study involves 8 ChIA-PET samples, 8 RNA-seq samples, and 13 ChIP-seq samples. All experiments in this study were carried out using two biological replicates. Each replicate involved at least 30 rice seedlings. All buckets were randomly placed in the growth chamber during the treatments.
 
Contributor(s) Chang Y, Liu J, Guo M, Li X, Xiong L
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Submission date Sep 06, 2023
Last update date Sep 19, 2024
Contact name Yu Chang
E-mail(s) yuchang@mail.hzau.edu.cn
Organization name Huazhong Agricultural University
Department National Key Laboratory of Crop Genetic Improvement
Street address No.1, Shizishan Street, Hongshan District
City Wuhan
State/province Hubei
ZIP/Postal code 430070
Country China
 
Platforms (1)
GPL24468 HiSeq X Ten (Oryza sativa)
Samples (8)
GSM7763699 DS_WT_H3K9ac_ChIApet_rep1
GSM7763700 DS_WT_H3K9ac_ChIApet_rep2
GSM7763701 DS_osbzip23_H3K9ac_ChIApet_rep1
This SubSeries is part of SuperSeries:
GSE242460 H3K9ac-marked three-dimensional genome dynamics in rice under drought stress
Relations
BioProject PRJNA1013509

Download family Format
SOFT formatted family file(s) SOFTHelp
MINiML formatted family file(s) MINiMLHelp
Series Matrix File(s) TXTHelp

Supplementary file Size Download File type/resource
GSE242455_DS_WT_H3K9ac_ChIApet.RPGC.bw 200.3 Mb (ftp)(http) BW
GSE242455_DS_osbzip23_H3K9ac_ChIApet.RPGC.bw 214.7 Mb (ftp)(http) BW
GSE242455_N_WT_H3K9ac_ChIApet.RPGC.bw 178.8 Mb (ftp)(http) BW
GSE242455_RE_WT_H3K9ac_ChIApet.RPGC.bw 168.2 Mb (ftp)(http) BW
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