Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Abscisic acid, Biology, Antioxidant, Cell biology, Chemistry, and Oryza sativa.
Rhizosphere microbes enhance plant resistance to cadmium through a root ROS-microbial IAA-root DNA methylation interkingdom signaling pathway
The class III peroxidase OsPrx20 is a key regulator of stress response and growth in rice
Basic helix-loop-helix transcription factor OsbHLH110 positively regulates abscisic acid biosynthesis and salinity tolerance in rice
Abscisic acid‐induced <scp>H</scp><sub>2</sub><scp>O</scp><sub>2</sub> production positively regulates the activity of <scp>SAPK</scp>8/9/10 through oxidation of the type one protein phosphatase <scp>O</scp>s<scp>PP</scp>47
Phosphorylation of OsRbohB by the protein kinase OsDMI3 promotes H2O2 production to potentiate ABA responses in rice
A B‐box transcription factor <scp>OsBBX17</scp> regulates saline‐alkaline tolerance through the <scp>MAPK</scp> cascade pathway in rice
The UDP-glucuronic acid decarboxylase OsUXS3 regulates Na+ ion toxicity tolerance under salt stress by interacting with OsCATs in rice
The NADPH oxidase OsRbohD and OsRbohH negatively regulate saline-alkaline tolerance in rice
The NADPH oxidase OsRbohA increases salt tolerance by modulating K+ homeostasis in rice
OsDMI3‐mediated OsUXS3 phosphorylation improves oxidative stress tolerance by modulating OsCATB protein abundance in rice
A J-Protein OsDjC46 Interacts with ZFP36 to Participate in ABA-Mediated Antioxidant Defense in Rice
Plant Mitogen-Activated Protein Kinase Cascades in Environmental Stresses
BRASSINOSTEROID‐SIGNALING KINASE 1 phosphorylating CALCIUM/CALMODULIN‐DEPENDENT PROTEIN KINASE functions in drought tolerance in maize
Rice calcium/calmodulin-dependent protein kinase directly phosphorylates a mitogen-activated protein kinase kinase to regulate abscisic acid responses
Cell wall β-1,4-galactan regulated by the BPC1/BPC2-GALS1 module aggravates salt sensitivity in Arabidopsis thaliana
Calcium/calmodulin-dependent protein kinase OsDMI3 positively regulates saline-alkaline tolerance in rice roots
Profiling of rice Cd-tolerant genes through yeast-based cDNA library survival screening
Xyloglucan endotransglucosylase-hydrolase30 negatively affects salt tolerance in Arabidopsis
Bioinformatic Exploration of the Targets of Xylem Sap miRNAs in Maize under Cadmium Stress
Comprehensive Analysis of the Cadmium Tolerance of Abscisic Acid-, Stress- and Ripening-Induced Proteins (ASRs) in Maize
Phosphorylation of bip130 by OsMPK1 regulates abscisic acid-induced antioxidant defense in rice
Maize NAC-domain retained splice variants act as dominant negatives to interfere with the full-length NAC counterparts
Abscisic Acid Inhibits Rice Protein Phosphatase PP45 via H <sub>2</sub> O <sub>2</sub> and Relieves Repression of the Ca <sup>2+</sup> /CaM-Dependent Protein Kinase DMI3
An Atypical Late Embryogenesis Abundant Protein OsLEA5 Plays a Positive Role in ABA-Induced Antioxidant Defense in Oryza sativa L.
Comparative analysis of Cd-responsive maize and rice transcriptomes highlights Cd co-modulated orthologs
Maize Cd-tolerant ZmVTE4 encoding γ-tocopherol-methyl-transferase alleviated Cd-toxicity through its product α-tocopherol
Co-expression network analysis of the transcriptomes of rice roots exposed to various cadmium stresses reveals universal cadmium-responsive genes
The ascorbate peroxidase APX1 is a direct target of a zinc finger transcription factor ZFP36 and a late embryogenesis abundant protein OsLEA5 interacts with ZFP36 to co-regulate OsAPX1 in seed germination in rice
Phosphorylation of a NAC Transcription Factor by a Calcium/Calmodulin-Dependent Protein Kinase Regulates Abscisic Acid-Induced Antioxidant Defense in Maize
Calcium and ZmCCaMK are involved in brassinosteroid-induced antioxidant defense in maize leaves