Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Biology, Mutant, Arabidopsis, Cell biology, Phosphatidic acid, and Oryza sativa.
A phosphorylation-regulated NPF transporter determines salt tolerance by mediating chloride uptake in soybean plants
SnRK2.5-mediated phosphorylation of PIN2 links osmotic stress signaling to auxin-dependent root adaptive growth in Arabidopsis
Anionic phospholipid‐mediated transmembrane transport and intracellular membrane trafficking in plant cells
Phosphatidic acid–regulated SOS2 controls sodium and potassium homeostasis in Arabidopsis under salt stress
Light-gated channelrhodopsin sparks proton-induced calcium release in guard cells
Rice potassium transporter <scp>OsHAK18</scp> mediates phloem K <sup>+</sup> loading and redistribution
OsCYBDOMG1, a cytochrome b561 domain-containing protein, regulates salt tolerance and grain yield in rice
Phosphatidic acid regulates ammonium uptake by interacting with AMMONIUM TRANSPORTER 1;1 in Arabidopsis
Transcriptional repressor RST1 controls salt tolerance and grain yield in rice by regulating gene expression of asparagine synthetase
A 14‐3‐3 protein positively regulates rice salt tolerance by stabilizing phospholipase C1
Mitochondrial GPAT-derived LPA controls auxin-dependent embryonic and postembryonic development
Rice shaker potassium channel <scp>OsAKT2</scp> positively regulates salt tolerance and grain yield by mediating K<sup>+</sup> redistribution
An endoplasmic reticulum–localized cytochrome <i>b</i> <sub>5</sub> regulates high-affinity K <sup>+</sup> transport in response to salt stress in rice
A bHLH protein, OsBIM1, positively regulates rice leaf angle by promoting brassinosteroid signaling
Phosphatidic acid directly binds with rice potassium channel OsAKT2 to inhibit its activity
Identification and functional characterization of the chloride channel gene, GsCLC-c2 from wild soybean
Phosphatidic acid promotes the activation and plasma membrane localization of MKK7 and MKK9 in response to salt stress
Phosphatidic Acid Directly Regulates PINOID-Dependent Phosphorylation and Activation of the PIN-FORMED2 Auxin Efflux Transporter in Response to Salt Stress
Characterization and Fine Mapping of a Rice Leaf‐Rolling Mutant Deficient in Commissural Veins
Arabidopsis thaliana constitutively active ROP11 interacts with the NADPH oxidase respiratory burst oxidase homologue F to regulate reactive oxygen species production in root hairs
The Rice High-Affinity Potassium Transporter1;1 Is Involved in Salt Tolerance and Regulated by an MYB-Type Transcription Factor
The potassium transporter <scp>O</scp>s<scp>HAK</scp>21 functions in the maintenance of ion homeostasis and tolerance to salt stress in rice