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Series GSE51578 Query DataSets for GSE51578
Status Public on May 31, 2015
Title Natural Variation and Timing of Stress Responses Promote and Predict Heterosis
Organism Arabidopsis thaliana
Experiment type Expression profiling by high throughput sequencing
Summary Hybrid plants and animals grow larger and more vigorously than the parents, a common phenomenon known as hybrid vigor or heterosis. Heterosis often correlates with the genetic distance between hybridizing parents, but the mechanism for this is largely unknown. We found that genetic distance was correlated with natural variation of stress responses under the control of the circadian clock. CIRCADIAN-CLOCK-ASSOCIATED1 (CCA1) and LATE-ELONGATED-HYPOCOTYL (LHY) or CCA1 alone mediate expression amplitudes and periods of these stress-responsive genes in stress and non-stress conditions. In Arabidopsis thaliana intraspecific hybrids, genome-wide expression of many biotic and abiotic stress-responsive genes was diurnally repressed to promote biomass heterosis, which is associated with several biomass quantitative trait loci (QTLs). Expression differences in four selected stress-responsive genes among ten ecotypes could be used to predict heterosis in their hybrids. Parent plants with larger expression differences between stress-responsive genes produced higher-vigor hybrids, while those with smaller differences produced lower-vigor hybrids. Stress-responsive genes were epigenetically repressed in the hybrids under normal conditions but induced during times of stress at certain times of the day, balancing the tradeoff between stress responses and growth. Consistently, repressing the stress genes in diploids increased growth vigor. We demonstrate how hybrids manipulate diurnal stress-responsive gene expression to enhance growth vigor. Both circadian and epigenetic regulation play key roles in the altered expression of stress-responsive genes in hybrids. Our findings provide a conceptual advance and mechanistic understanding of heterosis, as well as selection criteria for parents to be effectively used for producing high-yield hybrids.
 
Overall design Examination of gene expression in Arabidopsis thaliana F1 hybrids between Col and C24 and 3 time points using mRNA-seq
 
Contributor(s) Marisa M, Song Q, Shi X, Juenger TE, Chen JZ
Citation(s) 26154604
Submission date Oct 23, 2013
Last update date May 15, 2019
Contact name Z Jeffrey Jeffrey Chen
E-mail(s) zjchen@austin.utexas.edu
Phone 512-475-9327
Organization name The University of Texas at Austin
Department Molecular Biosciences
Lab Polyploidy, Hybrid Vigor, and Epigenetics
Street address 2506 Speedway NMS 3.122 Stop A500
City Austin
State/province TX
ZIP/Postal code 78712-1597
Country USA
 
Platforms (1)
GPL9062 Illumina Genome Analyzer (Arabidopsis thaliana)
Samples (12)
GSM1248693 Col_ZT0_mRNAseq
GSM1248694 C24_ZT0_mRNAseq
GSM1248695 ColxC24_ZT0_mRNAseq
Relations
BioProject PRJNA223529
SRA SRP031847

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
GSE51578_RAW.tar 2.6 Mb (http)(custom) TAR (of TXT)
SRA Run SelectorHelp
Raw data are available in SRA
Processed data provided as supplementary file

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