Area of research
Molecular Biology · Plant Science
Research interest
Research interests include Plant Molecular Biology Research, Cancer-related molecular mechanisms research, Plant Reproductive Biology, and Circular RNAs in diseases.
An Ethylene‐Response Factor <scp>LlERF092</scp> Coordinates With <scp>LlETO1</scp> to Improve Thermotolerance by Activating <i>LlMBF1c</i> in Lily
The LoMYB26/LoJAZ4-LoCOMT module regulates anther dehiscence via Jasmonic acid-mediated endothecium lignification in lily
An AP2/ERF member LlERF012 confers thermotolerance via activation of HSF pathway in lily
A LlWRKY33-LlHSFA4-LlCAT2 module confers resistance to <i>Botrytis cinerea</i> in lily
The R2R3 MYB transcription factor LoMYB21 regulates anther dehiscence by jasmonate biosynthesis pathway in Lilium oriental hybrid ‘Siberia’
Phosphoproteome Profiling of uEVs Reveals p-AQP2 and p-GSK3β as Potential Markers for Diabetic Nephropathy
Starch Degradation and Sucrose Accumulation of Lily Bulbs after Cold Storage
High-efficiency <i>Agrobacterium</i>-mediated transformation of chrysanthemum via vacuum infiltration of internode
LlWRKY39 is involved in thermotolerance by activating LlMBF1c and interacting with LlCaM3 in lily (Lilium longiflorum)
Chrysanthemum embryo development is negatively affected by a novel ERF transcription factor, CmERF12
A Novel Lateral Organ Boundary-domain Factor CmLBD2 Positively Regulates Pollen Development by Activating <i>CmACOS5</i> in <i>Chrysanthemum morifolium</i>
The transcription factor CmLEC1 positively regulates the seed-setting rate in hybridization breeding of chrysanthemum
Alternative Splicing Provides a Mechanism to Regulate LlHSFA3 Function in Response to Heat Stress in Lily
MicroRNA and Putative Target Discoveries in Chrysanthemum Polyploidy Breeding
TXNL1-XRCC1 pathway regulates cisplatin-induced cell death and contributes to resistance in human gastric cancer