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#Ning Tang
Constitutive Activation of Transcription Factor OsbZIP46 Improves Drought Tolerance in Rice
TangLab , 河南大学
Over-expression of a LEA gene in rice improves drought resistance under the field conditions
TangLab , 河南大学
Systematic identification of X1-homologous genes reveals a family involved in stress responses in rice
TangLab , 河南大学
Identification and expression profiling analysis of TIFY family genes involved in stress and phytohormone responses in rice
TangLab , 河南大学
Characterization of OsbZIP23 as a Key Player of the Basic Leucine Zipper Transcription Factor Family for Conferring Abscisic Acid Sensitivity and Salinity and Drought Tolerance in Rice
TangLab , 河南大学
Co-overexpression of the Constitutively Active Form of OsbZIP46 and ABA-Activated Protein Kinase SAPK6 Improves Drought and Temperature Stress Resistance in Rice
TangLab , 河南大学
MODD Mediates Deactivation and Degradation of OsbZIP46 to Negatively Regulate ABA Signaling and Drought Resistance in Rice
TangLab , 河南大学
Feedback Regulation of ABA Signaling and Biosynthesis by a bZIP Transcription Factor Targets Drought-Resistance-Related Genes
TangLab , 河南大学
A lamin‐like protein OsNMCP1 regulates drought resistance and root growth through chromatin accessibility modulation by interacting with a chromatin remodeller OsSWI3C in rice
TangLab , 河南大学
Reversible Histone H2B Monoubiquitination Fine-Tunes Abscisic Acid Signaling and Drought Response in Rice
TangLab , 河南大学
Natural variation at XND1 impacts root hydraulics and trade-off for stress responses in Arabidopsis
TangLab , 河南大学
Flip-flop method: A new T1-weighted flow-MRI for plants studies
TangLab , 河南大学
Oscillating Aquaporin Phosphorylation and 14-3-3 Proteins Mediate the Circadian Regulation of Leaf Hydraulics
TangLab , 河南大学
Evaluation of Seven Function-Known Candidate Genes for their Effects on Improving Drought Resistance of Transgenic Rice under Field Conditions
TangLab , 河南大学
Current understanding of genetic and molecular basis of cold tolerance in rice
TangLab , 河南大学