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Transcription factor WRKY46 regulates osmotic stress responses and stomatal movement tissue specifically and independently in Arabidopsis
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2015-12-02
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Transcription factor WRKY46 regulates osmotic stress responses and stomatal movement tissue specifically and independently in Arabidopsis. Arabidopsis thaliana
Drought and salt stress severely inhibit plant growth and development. However, the regulatory mechanisms of plants in response to these stresses are not fully understood. Here we find that the expres
NIAID Data Ecosystem80
Multiome in the same cell revealed the impact of osmotic stress on Arabidopsis root tip development at single-cell level [ATAC]
Cell-specific transcriptional regulatory networks (TRNs) play vital roles in plant development and response to environmental stresses. However, traditional single-cell mono-omics techniques are unable
NIAID Data Ecosystem70
Dominant Negative Guard Cell K(+) Channel Mutants Reduce Inward-Rectifying K(+) Currents and Light-Induced Stomatal Opening in Arabidopsis
Inward-rectifying potassium (K(+)(in)) channels in guard cells have been suggested to provide a pathway for K(+) uptake into guard cells during stomatal opening. To test the proposed role of guard cel
PubMed Central60
Additional file 2: Table S1. of Mitochondrial pyruvate carrier 1 mediates abscisic acid-regulated stomatal closure and the drought response by affecting cellular pyruvate content in Arabidopsis thaliana
Stomatal movement raw data; Table S2. Water loss rate raw data; Table S3. ROS fluorescence intensity raw data; Table S4. Patch clamp raw data. (ZIP 60 kb)
NIAID Data Ecosystem80
Table_1_Effect of Osmotic Stress on the Growth, Development and Pathogenicity of Setosphaeria turcica.XLSX
Osmotic stress is a severe condition frequently encountered by microorganisms; however, there is limited knowledge on the influence of hyperosmotic stress on the growth, development and pathogenicity
NIAID Data Ecosystem70



