OMIX006235

1Summary
Title SA-driven inhibition of hypocotyl elongation in darkness
Description SA inhibits hypocotyl elongation in etiolated seedlings. npr1 mutant shows more dramatic shorter hypocotyl compared to wild-type in the presence of SA. npr1ex1 rescues npr1 mutant phenotype in response to SA.
Organism Arabidopsis thaliana
Data Type Expression Profiling
Data Accessibility Open-access
BioProject PRJCA025120
Release Date 2025-12-03
Submitter Yanling Liu (liuyl@cemps.ac.cn)
Organization CAS Center for Excellence in Molecular Plant Sciences / Institute of Plant Physiology and Ecology
Submission Date 2024-04-12
2Files & Download

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File ID File Title Number/Samples File Type File Size File Suffix Download
OMIX006235-01 npr1 versus WT_SA 1 Expression Profiling 11.1 KB xlsx
OMIX006235-02 npr1ex1 versus npr1_SA 1 Expression Profiling 2.9 MB xlsx
OMIX006235-03 npr1ex1 versus WT_SA 1 Expression Profiling 3.3 MB xlsx
3Relevant Publications
Paper Title Journal Name Publish Time Accession Citing Type
Biogenic retrograde signaling via GUN1 ensures thermotolerant chloroplast biogenesis during seedling establishment in Arabidopsis thaliana Journal of Integrative Plant Biology 2025-12 OMIX006235 OMIX006237 OMIX006255 OMIX006271 OMIX006273 OMIX006274 OMIX006275 OMIX006285 OMIX006286 OMIX017293 OMIX006228 Deposit
Salicylic acid and ROS signaling modulate hypocotyl elongation in darkness via NPR1 and EX1 Science Advances 2025-10 OMIX006235 OMIX006237 OMIX006255 OMIX006271 OMIX006273 OMIX006274 OMIX006275 OMIX006285 OMIX006286 OMIX017293 OMIX006228 Deposit

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