ArticlePlant biotechnology journal2025
A system genetics analysis uncovers the regulatory variants controlling drought response in wheat.
Article in Plant biotechnology journal, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed.
- Wheat Drought Management: A Broader Prospect.Plants (Basel, Switzerland) · 2026Review
- Conditionally Significant eQTL and TWAS Analyses Identify MsRD26 as a Major Candidate Positive Regulator of Salt Tolerance in Medicago sativa L.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2026Article
- Genome-wide analysis of Ariadne genes associated with drought and salt stress tolerance in wheat (Triticum aestivum L.).BMC plant biology · 2026Article
- Comprehensive analysis of HB-PHD transcription factors associated with drought and salt stresses in wheat.BMC genomics · 2026Article
- Molecular basis of drought tolerance in Rosa xanthina: an integrated analysis of physiology, transcriptome, and NAC transcription factor.BMC genomics · 2026Article
- Comprehensive analysis of ABA-aldehyde oxidase genes associated with drought and salt stress tolerance in wheat (Frontiers in plant science · 2026Article
- Integrative omics of the genetic basis for wheat WUE and drought resilience reveal the function of TaMYB7-A1.Nature communications · 2025Article
- HebQTLs reveal intra-subgenome regulation inducing unbalanced expression and function among bread wheat homoeologs.Genome biology · 2025Article
- Stripe rust fungi hijack a host transcriptional repressor to induce TaSWEET14d for enhanced sugar uptake in wheat.Science advances · 2025Article
- Combined multi-omics and physiological approaches to elucidate drought-response mechanisms of durum wheat.Frontiers in plant science · 2025Article
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14 authors.
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Abstract
Plants activate a variable response to drought stress by modulating transcription of key genes. However, our knowledge of genetic variations governing gene expression in response to drought stress remains limited in natural germplasm. Here, we performed a comprehensive analysis of the transcriptional variability of 200 wheat accessions in response to drought stress by using a systems genetics approach integrating pan-transcriptome, co-expression networks, transcriptome-wide association study (TWAS), and expression quantitative trait loci (eQTLs) mapping. We identified 1621 genes and eight co-expression modules significantly correlated with wheat drought tolerance. We also defined 620 664 and 654 798 independent eQTLs associated with the expression of 17 429 and 18 080 eGenes under normal and drought stress conditions. Focusing on dynamic regulatory variants, we further identified 572 eQTL hotspots and constructed transcription factors governed drought-responsive network by the XGBoost model. Subsequently, by combining with genome-wide association study (GWAS), we uncovered a 369-bp insertion variant in the TaKCS3 promoter containing multiple cis-regulatory elements recognized by eQTL hotspot-associated transcription factors that enhance its transcription. Further functional analysis indicated that elevating TaKCS3 expression affects cuticular wax composition to reduce water loss during drought stress, and thereby increase drought tolerance. This study sheds light on the genome-wide genetic variants that influence dynamic transcriptional changes during drought stress and provides a valuable resource for the mining of drought-tolerant genes in the future.
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