Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Plant Molecular Biology Research, Plant Gene Expression Analysis, Plant Stress Responses and Tolerance, and Plant nutrient uptake and metabolism.
Unknown Functional Domain 506 Protein Regulates Zinc Tolerance in Apple.
Nitrogen-Doped Carbon Dots Enhance Plant Salt Stress Tolerance via Sphingolipid-Dependent Calcium Signaling
MdCNGC15B, a cyclic nucleotide-gated channel (CNGC) protein, positively regulates the tolerance to drought and salt stress in apple
The R2R3-MYB transcription factor MdMYB62 negatively regulates the drought and salt tolerance in apple
MdZFP7 integrates JA and GA signals via interaction with MdJAZ2 and MdRGL3a in regulating anthocyanin biosynthesis and undergoes degradation by the E3 ubiquitin ligase MdBRG3.
The E3 ubiquitin ligase BRG3 and the protein kinase MPK7 antagonistically regulate LBD36 turnover, a key node for integrating nitrate and gibberellin signaling in apple.
Trimeric tetrapeptide repeat protein TPR16 positively regulates salt stress in apple
The apple phosphate starvation response transcription factor MdPHR1 positively regulates zinc and cadmium tolerance.
Apple MIEL1/ABI5-MAX2 regulatory module links strigolactone and abscisic acid signals.
MdbHLH162 connects the gibberellin and jasmonic acid signals to regulate anthocyanin biosynthesis in apple.
MdTPR16, an apple tetratricopeptide repeat (TPR)-like superfamily gene, positively regulates drought stress in apple
Brassinosteroids biosynthetic gene MdBR6OX2 regulates salt stress tolerance in both apple and Arabidopsis
The MdNAC72-MdABI5 module acts as an interface integrating jasmonic acid and gibberellin signals and undergoes ubiquitination-dependent degradation regulated by MdSINA2 in apple.
Apple SINA11-JAZ2 module is involved in jasmonate signaling response.
Ethylene inhibits malate accumulation in apple by transcriptional repression of <i>aluminum‐activated malate transporter 9</i> via the WRKY31‐ERF72 network
Ethylene inhibits malate accumulation in apple by transcriptional repression of aluminum-activated malate transporter 9 via the WRKY31-ERF72 network.
The E3 ubiquitin ligases SINA1 and SINA2 integrate with the protein kinase CIPK20 to regulate the stability of RGL2a, a positive regulator of anthocyanin biosynthesis.
An apple NITRATE REDUCTASE 2 gene positively regulates nitrogen utilization and abiotic stress tolerance in Arabidopsis and apple callus
The E3 ubiquitin ligase SINA1 and the protein kinase BIN2 cooperatively regulate PHR1 in apple anthocyanin biosynthesis.
Ectopic expression of MmSERT, a mouse serotonin transporter gene, regulates salt tolerance and ABA sensitivity in apple and Arabidopsis
Ectopic expression of MmCYP1A1, a mouse cytochrome P450 gene, positively regulates stress tolerance in apple calli and Arabidopsis.
The apple BTB protein MdBT2 positively regulates MdCOP1 abundance to repress anthocyanin biosynthesis.
MdCIB1, an apple bHLH transcription factor, plays a positive regulator in response to drought stress
BTB-TAZ Domain Protein MdBT2 Modulates Malate Accumulation and Vacuolar Acidification in Response to Nitrate
Apple SUMO E3 ligase MdSIZ1 facilitates SUMOylation of MdARF8 to regulate lateral root formation
MdMYB1 Regulates Anthocyanin and Malate Accumulation by Directly Facilitating Their Transport into Vacuoles in Apples