Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Plant Stress Responses and Tolerance, Plant-Microbe Interactions and Immunity, Plant Molecular Biology Research, and Photosynthetic Processes and Mechanisms.
Tolerance to multiple abiotic stresses is mediated by interacting CNGC proteins that regulate Ca<sup>2+</sup> influx and stomatal movement in rice
Ethylene antagonizes ABA and inhibits stomatal closure and chilling tolerance in rice
A major gene for chilling tolerance variation in <i>Indica</i> rice codes for a kinase <scp>OsCTK1</scp> that phosphorylates multiple substrates under cold
Chromatin accessibility mediated by CHROMATIN REMODELING 11 promotes chilling tolerance in rice
Identification and characterization of SmPIC30, an important gene that controls resistance to the auxin herbicide picloram in eggplant
CHROMATIN REMODELING 11-dependent nucleosome occupancy affects disease resistance in rice
Editorial: Molecular and genetic mechanisms of chilling tolerance in plants
Dehydration-Responsive Element Binding Protein 1C, 1E, and 1G Promote Stress Tolerance to Chilling, Heat, Drought, and Salt in Rice
Divergent Roles of CNGC2 and CNGC4 in the Regulation of Disease Resistance, Plant Growth and Heat Tolerance in Arabidopsis
HsfA1d promotes hypocotyl elongation under chilling via enhancing expression of ribosomal protein genes in Arabidopsis
ISWI chromatin remodeling factors repress PAD4-mediated plant immune responses in Arabidopsis
CYCLIC NUCLEOTIDE-GATED ION CHANNELs 14 and 16 Promote Tolerance to Heat and Chilling in Rice
Arabidopsis immune-associated nucleotide-binding genes repress heat tolerance at the reproductive stage by inhibiting the unfolded protein response and promoting cell death
Rice copine genes <i>Os<scp>BON</scp>1</i> and <i>Os<scp>BON</scp>3</i> function as suppressors of broad‐spectrum disease resistance
Natural variation reveals that OsSAP16 controls low-temperature germination in rice
Calcium Pumps and Interacting BON1 Protein Modulate Calcium Signature, Stomatal Closure, and Plant Immunity
The Arabidopsis Chromatin-Remodeling Factor CHR5 Regulates Plant Immune Responses and Nucleosome Occupancy
Silencing of copine genes confers common wheat enhanced resistance to powdery mildew
Identification and analysis of copine/BONZAI proteins among evolutionarily diverse plant species
Expression and promoter analysis of the OsHSP16.9C gene in rice
Monoubiquitination of Histone 2B at the Disease Resistance Gene Locus Regulates Its Expression and Impacts Immune Responses in Arabidopsis
Disease Resistance Gene-Induced Growth Inhibition Is Enhanced by<i>rcd1</i>Independent of Defense Activation in Arabidopsis
AtMYB44 positively modulates disease resistance to Pseudomonas syringae through the salicylic acid signalling pathway in Arabidopsis