Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Biology, Mutant, Cell biology, Oryza sativa, Transcription factor, and Panicle.
<i>SMALL AND ROUND GRAIN</i> is involved in the brassinosteroid signaling pathway which regulates grain size in rice
The G-protein γ subunit DEP1 facilitates brassinosteroid signaling in rice via a MYB–bHLH–ARF module
The F‐box protein <scp>RCN127</scp> enhances rice tillering and grain yield by mediating the degradation of <scp>OsTB1</scp> and <scp>OsTCP19</scp>
Perturbation of Anion/Cation Transport Leads to Apical Panicle Abortion in Rice by Disrupting Ca <sup>2+</sup> Homeostasis
The DENSE AND ERECT PANICLE1-GRAIN NUMBER ASSOCIATED module enhances rice yield by repressing <i>CYTOKININ OXIDASE 2</i> expression
A CYP78As–small grain4–coat protein complex Ⅱ pathway promotes grain size in rice
<i>Dwarf and High Tillering1</i> represses rice tillering through mediating the splicing of <i>D14</i> pre-mRNA
A regulatory loop establishes the link between the circadian clock and abscisic acid signaling in rice
<scp><i>FLOURY ENDOSPERM20</i></scp> encoding <scp>SHMT4</scp> is required for rice endosperm development
Rice<i>STOMATAL CYTOKINESIS DEFECTIVE2</i>regulates cell expansion by affecting vesicular trafficking in rice
Transcriptional activation and phosphorylation of OsCNGC9 confer enhanced chilling tolerance in rice
A cyclic nucleotide-gated channel mediates cytoplasmic calcium elevation and disease resistance in rice
Small Grain and Dwarf 2, encoding an HD-Zip II family transcription factor, regulates plant development by modulating gibberellin biosynthesis in rice
OsALMT7 Maintains Panicle Size and Grain Yield in Rice by Mediating Malate Transport