Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Biology, Botany, Prunus, Horticulture, Nutrient, and Arabidopsis.
PmRGL2/PmFRL3–<i>PmSVP</i> Module Regulates Flowering Time in Japanese apricot (<i>Prunus mume</i> Sieb. et Zucc.)
A NAC family gene <i>PmNAC32</i> associated with photoperiod promotes flower induction in <i>Prunus mume</i>
Diversification and evolution of the Polycomb group family in nine Rosaceae species and molecular characteristics of PmLHP1
Establishment of an In Vitro Culture and Genetic Transformation System of Callus in Japanese Apricot (Prunus mume Sieb. et Zucc.)
Pangenome Analysis Reveals Structural Variations Associated With Citric Acid Accumulation in <i>Prunus mume</i>
Allelic variation of <i>PmCBF03</i> contributes to the altitude and temperature adaptability in Japanese apricot (<i>Prunus mume</i> Sieb. et Zucc.)
Chemical profiling and antioxidant activity of Japanese apricot flowers with green sepals: Insights into medicinal potential and harvest optimization
AGAMOUS-LIKE24 controls pistil number in Japanese apricot by targeting the <i>KNOTTED1-LIKE</i> gene <i>KNAT2/6-a</i>
Haplotype-resolved genome of <i>Prunus zhengheensis</i> provides insight into its evolution and low temperature adaptation in apricot
Molecular Research Progress on Gametophytic Self-Incompatibility in Rosaceae Species
PmLBD3 links auxin and brassinosteroid signalling pathways on dwarfism in Prunus mume
Genome-Wide Identification of the ALMT Gene Family in Nine Rosaceae Species and Functional Analysis Associated with Organic Acid Accumulation in Prunus mume
Ectopic expression of PmGRF7 isolated from Japanese apricot in tomato leads to seed sterility
Fruit quality prediction based on soil mineral element content in peach orchard
Prediction and optimization of fruit quality of peach based on artificial neural network