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The transcriptional regulatory network in the drought response and its crosstalk in abiotic stress responses including drought, cold, and heat

Frontiers in Plant Science · 2014 · Vol. 5 · pp. 170–170

Abstract

Drought negatively impacts plant growth and the productivity of crops around the world. Understanding the molecular mechanisms in the drought response is important for improvement of drought tolerance using molecular techniques. In plants, abscisic acid (ABA) is accumulated under osmotic stress conditions caused by drought, and has a key role in stress responses and tolerance. Comprehensive molecular analyses have shown that ABA regulates the expression of many genes under osmotic stress conditions, and the ABA-responsive element (ABRE) is the major cis-element for ABA-responsive gene expression. Transcription factors (TFs) are master regulators of gene expression. ABRE-binding protein and ABRE-binding factor TFs control gene expression in an ABA-dependent manner. SNF1-related protein kinases 2, group A 2C-type protein phosphatases, and ABA receptors were shown to control the ABA signaling pathway. ABA-independent signaling pathways such as dehydration-responsive element-binding protein TFs and NAC TFs are also involved in stress responses including drought, heat, and cold. Recent studies have suggested that there are interactions between the major ABA signaling pathway and other signaling factors in stress responses. The important roles of these TFs in crosstalk among abiotic stress responses will be discussed. Control of ABA or stress signaling factor expression can improve tolerance to environmental stresses. Recent studies using crops have shown that stress-specific overexpression of TFs improves drought tolerance and grain yield compared with controls in the field.

Plant Stress Responses and TolerancePlant Molecular Biology ResearchAbscisic acidCrosstalkAbiotic stressTranscription factorBiologyCell biologySignal transductionDrought toleranceOsmotic shockWRKY protein domain

Funding

  • Ministry of Education, Culture, Sports, Science and Technology
  • Ministry of Agriculture, Forestry and Fisheries
  • Japan International Cooperation Agency
  • Japan Society for the Promotion of Science
  • Japan Science and Technology Agency
  • Science and Technology Research Partnership for Sustainable Development
Citations
864
FWCI
98.48
field-weighted impact
References
81
Percentile
100%
vs. same field & year
Citations per year
References
ABA perception and signalling
Trends in Plant Science · 2010 · 1,330 citations
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