Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Arabidopsis, Senescence, Biology, Mutant, Chlorophyll, and Transcription factor.
Chemical induction of leaf senescence and powdery mildew resistance involves ethylene-mediated chlorophyll degradation and ROS metabolism in cucumber
The NPR1‐WRKY46‐WRKY6 signaling cascade mediates probenazole/salicylic acid‐elicited leaf senescence in <i>Arabidopsis thaliana</i>
The transcription factor <scp>ZmNAC126</scp> accelerates leaf senescence downstream of the ethylene signalling pathway in maize
MKK4/MKK5-MPK1/MPK2 cascade mediates SA-activated leaf senescence via phosphorylation of NPR1 in Arabidopsis
Molecular and physiological analyses of the effects of red and blue LED light irradiation on postharvest senescence of pak choi
The H3K27me3 demethylase REF6 promotes leaf senescence through directly activating major senescence regulatory and functional genes in Arabidopsis
NYEs/SGRs‐mediated chlorophyll degradation is critical for detoxification during seed maturation in <i>Arabidopsis</i>
Suppressor of Overexpression of CO 1 Negatively Regulates Dark-Induced Leaf Degreening and Senescence by Directly Repressing Pheophytinase and Other Senescence-Associated Genes in Arabidopsis
ABF2, ABF3, and ABF4 Promote ABA-Mediated Chlorophyll Degradation and Leaf Senescence by Transcriptional Activation of Chlorophyll Catabolic Genes and Senescence-Associated Genes in Arabidopsis
The role of ANAC072 in the regulation of chlorophyll degradation during age- and dark-induced leaf senescence
CCX1, a Putative Cation/Ca<sup>2+</sup>Exchanger, Participates in Regulation of Reactive Oxygen Species Homeostasis and Leaf Senescence
EIN3 and ORE1 Accelerate Degreening during Ethylene-Mediated Leaf Senescence by Directly Activating Chlorophyll Catabolic Genes in Arabidopsis
Jasmonic acid promotes degreening via <scp>MYC</scp>2/3/4‐ and <scp>ANAC</scp>019/055/072‐mediated regulation of major chlorophyll catabolic genes
<scp>TCP</scp> transcription factors are critical for the coordinated regulation of <i><scp>ISOCHORISMATE SYNTHASE</scp> 1</i> expression in <i>Arabidopsis thaliana</i>
NON-YELLOWING2 (NYE2), a Close Paralog of NYE1, Plays a Positive Role in Chlorophyll Degradation in Arabidopsis