Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Plant Stress Responses and Tolerance, Plant Molecular Biology Research, Plant nutrient uptake and metabolism, and Photosynthetic Processes and Mechanisms.
Roles of ROS and NO in Plant Responses to Individual and Combined Salt Stress and Waterlogging.
Identification and characterization of functional DOG1 residues regulating the abscisic acid response in Arabidopsis.
Synchronization between chloroplastic and cytosolic protein synthesis for photosynthesis complex assembly
Responses of the marine filamentous red alga ‘Bangia’ sp. ESS1 to recurrent changes in seawater concentration
Plant Hormonomics: A Key Tool for Deep Physiological Phenotyping to Improve Crop Productivity.
Exome-wide variation in a diverse barley panel reveals genetic associations with ten agronomic traits in Eastern landraces.
FE UPTAKE-INDUCING PEPTIDE1 maintains Fe translocation by controlling Fe deficiency response genes in the vascular tissue of Arabidopsis.
Temperature-dependent fasciation mutants provide a link between mitochondrial RNA processing and lateral root morphogenesis.
Genetic Elucidation for Response of Flowering Time to Ambient Temperatures in Asian Rice Cultivars.
PARN-like Proteins Regulate Gene Expression in Land Plant Mitochondria by Modulating mRNA Polyadenylation.
The barley pan-genome reveals the hidden legacy of mutation breeding.
BdWRKY38 is required for the incompatible interaction of Brachypodium distachyon with the necrotrophic fungus Rhizoctonia solani.
Hormonal and transcriptional analyses of fruit development and ripening in different varieties of black pepper (Piper nigrum).
Regulation of the Poly(A) Status of Mitochondrial mRNA by Poly(A)-Specific Ribonuclease Is Conserved among Land Plants.
Life-Course Monitoring of Endogenous Phytohormone Levels under Field Conditions Reveals Diversity of Physiological States among Barley Accessions.
Computer vision-based phenotyping for improvement of plant productivity: a machine learning perspective.
Overexpression of Prunus DAM6 inhibits growth, represses bud break competency of dormant buds and delays bud outgrowth in apple plants.
Transcriptome Analysis and Identification of a Transcriptional Regulatory Network in the Response to H<sub>2</sub>O<sub>2</sub>.
The mechanism of SO<sub>2</sub> -induced stomatal closure differs from O<sub>3</sub> and CO<sub>2</sub> responses and is mediated by nonapoptotic cell death in guard cells.
Control of seed dormancy and germination by DOG1-AHG1 PP2C phosphatase complex via binding to heme