Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Plant Stress Responses and Tolerance, Plant Molecular Biology Research, Plant Gene Expression Analysis, and Plant Physiology and Cultivation Studies.
MdHB7 enhances apple basal thermotolerance by activating ROS scavenging and lignin accumulation.
The MdERF1B-MdWRKY75-MdSOS3 Module Confers Salt Tolerance by Regulating Sodium-Potassium Homoeostasis in Apple.
MdWRKY75 regulates MdCAR4-mediated ABA receptor turnover to enhance drought resistance in apple.
MdDREB2A Negatively Modulates Apple Resistance Against Alternaria alternata by Inhibiting MdPR Genes Expression.
The MdICE1/MdFAMA-MdTYDC Transcriptional Module Confers Cold Tolerance by Regulating Dopamine Metabolism in Apple.
LysM receptor-like kinase MdLYK3 destabilizes the ABA receptors PYR/PYLs to suppress ABA signaling in apple.
Graphene Oxide Enhances Drought Tolerance in Apple by Promoting ROS Scavenging and Regulating Amino Acid Contents.
MdSCL13 coordinates with MdTCP2 to positively regulate cold tolerance by mediating ROS scavenging and JA biosynthesis.
Exogenous Trimethylamine N-Oxide (TMAO) Improves Apple Rootstock Drought Tolerance Through Physiological Modulation
MdHY5 positively regulates cold tolerance in apple by integrating the auxin and abscisic acid pathways.
Deciphering Plant NLR Genomic Evolution: Synteny-Informed Classification Unveils Insights into TNL Gene Loss.
The m<sup>6</sup>A Reader MhYTP2 Regulates <i>MdERF54</i> mRNA Stability and Contributes to Hypoxia Tolerance in Apple (<i>Malus domestica</i>)
Genomic investigation of plant secondary metabolism: insights from synteny network analysis of oxidosqualene cyclase flanking genes.
The SET-Domain-Containing Protein MdSDG26 Negatively Regulates Alternaria alternata Resistance in Apple.
Dopamine Regulates Its Own Synthesis via MdORG2 to Improve Low-Nitrogen Tolerance in Apple Plants.
Subgenomic divergence and functional innovation following whole‐genome duplication in Maleae species of Rosaceae
The m<sup>6</sup>A Reader MhYTP2 Regulates MdERF54 mRNA Stability and Contributes to Hypoxia Tolerance in Apple (Malus domestica).
MdMYB54 reduces disease severity caused by Fusarium solani in apple by modulating cell wall cellulose and pectate lyase-dependent defense.
MdATG10 Is Targeted by MdbHLH155 and Delays Leaf Senescence in Apple Plants by Activating Autophagy.
Evaluation of resistance resources and analysis of drought resistance mechanisms in apple rootstock hybrid progenies.
The MdGAMYB-MdHVA22g module confers drought tolerance by mediating γ-aminobutyric acid content and reactive oxygen species scavenging.
MdbHLH160 is stabilized via reduced MdBT2-mediated degradation to promote MdSOD1 and MdDREB2A-like expression for apple drought tolerance.
The MdHSC70-MdWRKY75 module mediates basal apple thermotolerance by regulating the expression of heat shock factor genes.
The transcription factor MdBPC2 alters apple growth and promotes dwarfing by regulating auxin biosynthesis.
Transcriptional factor MdESE3 controls fruit acidity by activating genes regulating malic acid content in apple.
An insertion in the promoter of a malate dehydrogenase gene regulates malic acid content in apple fruit.
An InDel variant in the promoter of the NAC transcription factor MdNAC18.1 plays a major role in apple fruit ripening.
Expression of the polyphenol oxidase gene <i>MdPPO7</i> is modulated by MdWRKY3 to regulate browning in sliced apple fruit
Transcriptional landscape and dynamics involved in sugar and acid accumulation during apple fruit development.
Transcription factor PbNAC71 regulates xylem and vessel development to control plant height.