article Open AccessTop 1% cited
Transcriptional Regulatory Networks in Response to Abiotic Stresses in Arabidopsis and Grasses
PLANT PHYSIOLOGY · 2009 · Vol. 149(1) · pp. 88–95
Kazuo Nakashima(Japan International Research Center for Agricultural Sciences)Yusuke Ito(The University of Tokyo)Kazuko Yamaguchi‐Shinozaki✉(Japan International Research Center for Agricultural Sciences)
Abstract
Various abiotic stresses such as drought, high salinity, high temperature, and low temperature negatively impact plant growth and productivity of crops. Plants have adapted to respond to these stresses at the molecular, cellular, physiological, and biochemical level, enabling them to survive. Various adverse environmental stresses induce the expression of a variety of genes in many plant species Numerous stress-induced genes have been identified using microarray experiments The products of these genes are thought to promote stress tolerance and to regulate gene expression through signal transduction pathways
Plant Stress Responses and TolerancePlant Molecular Biology ResearchPlant Gene Expression AnalysisArabidopsisAbscisic acidAbiotic stressArabidopsis thalianaAbiotic componentBiologyGeneSignal transductionGene expressionCell biology
MeSH terms
Cold TemperatureDehydrationPoaceaeHot TemperatureStress, PhysiologicalArabidopsisRegulonGene Expression Regulation, PlantGene Regulatory NetworksSalinity
Funding
- Ministry of Education, Culture, Sports, Science and Technology
- Ministry of Agriculture, Forestry and Fisheries
Citations
1,255
FWCI
75.44
field-weighted impact
References
87
Percentile
100%
vs. same field & year
Citations per year
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References
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The Plant Journal · 2002 · 1,945 citations
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The Plant Journal · 2004 · 928 citations
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PLANT PHYSIOLOGY · 2002 · 1,562 citations
A bZIP transcription factor, OsABI5, is involved in rice fertility and stress tolerance
Plant Molecular Biology · 2008 · 397 citations
Small RNAs as big players in plant abiotic stress responses and nutrient deprivation
Trends in Plant Science · 2007 · 932 citations
The 5?-region of Arabidopsis thaliana cor15a has cis-acting elements that confer cold-, drought- and ABA-regulated gene expression
Plant Molecular Biology · 1994 · 843 citations
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