Area of research
Molecular Biology · Plant Science
Research interest
Research interests include Plant Molecular Biology Research, Plant Reproductive Biology, Plant Gene Expression Analysis, and Plant biochemistry and biosynthesis.
The <i>LncRNA401</i>-<i>LrWRKY70</i> Module Regulates the Blue-Purple Flower Color Formation in <i>Lycoris</i>.
Chilling-responsive strigolactone signaling orchestrates bud break and chilling tolerance in apple.
The potential role of biomarkers CD28 and PF4 in the pathogenesis of idiopathic pulmonary fibrosis and their impact on the prognosis: an immune microenvironment analysis
Hyperoside, a flavonoid, induces <i>lnc187</i> and <i>lnc999</i> to enhance pigeon pea pollen tube growth and seed production.
Alternative Splicing Underpins the ALMT9 Transporter Function for Vacuolar Malic Acid Accumulation in Apple
CcNFYB3-CcMATE35 and LncRNA CcLTCS-CcCS modules jointly regulate the efflux and synthesis of citrate to enhance aluminium tolerance in pigeon pea.
Melatonin-mediated CcARP1 alters F-actin dynamics by phosphorylation of CcADF9 to balance root growth and salt tolerance in pigeon pea.
A linker histone acts as a transcription factor to orchestrate malic acid accumulation in apple in response to sorbitol.
Transcription factors MhDREB2A/MhZAT10 play a role in drought and cold stress response crosstalk in apple.
SnRK1 kinase-mediated phosphorylation of transcription factor bZIP39 regulates sorbitol metabolism in apple
SnRK1 kinase-mediated phosphorylation of transcription factor bZIP39 regulates sorbitol metabolism in apple.
Sorbitol induces flower bud formation via the MADS-box transcription factor EjCAL in loquat.
Numerical study on the design of multi-staged, opposing pulsed-jet cleaning (M-OPJC) for pleated filter cartridges
Molecular mechanism of naringenin regulation on flavonoid biosynthesis to improve the salt tolerance in pigeon pea (Cajanus cajan (Linn.) Millsp.).
Integrated transcriptome and physiological analysis revealed core transcription factors that promote flavonoid biosynthesis in apricot in response to pathogenic fungal infection.
Melatonin enhances stress tolerance in pigeon pea by promoting flavonoid enrichment, particularly luteolin in response to salt stress.
Identification and Analysis of Long Non-Coding RNAs Related to UV-B-Induced Anthocyanin Biosynthesis During Blood-Fleshed Peach (<i>Prunus persica</i>) Ripening.
Sorbitol Reduces Sensitivity to <i>Alternaria</i> by Promoting Ceramide Kinases (<i>CERK</i>) Expression through Transcription Factor <i>Pswrky25</i> in Populus (<i>Populus simonii</i> Carr.).
The pigeon pea CcCIPK14-CcCBL1 pair positively modulates drought tolerance by enhancing flavonoid biosynthesis.
Hyperoside regulates its own biosynthesis via MYB30 in promoting reproductive development and seed set in okra.
Selective Interaction of Sugarcane eIF4E with VPgs from Sugarcane Mosaic Pathogens
Transcriptome analysis revealed key genes involved in flavonoid metabolism in response to jasmonic acid in pigeon pea (Cajanus cajan (L.) Millsp.).
The functional analysis of ABCG transporters in the adaptation of pigeon pea (<i>Cajanus cajan</i>) to abiotic stresses.
Genome-wide analysis and characterization of R2R3-MYB family in pigeon pea (Cajanus cajan) and their functional identification in phenylpropanoids biosynthesis.
Hyperoside promotes pollen tube growth by regulating the depolymerization effect of actin-depolymerizing factor 1 on microfilaments in okra.
Arabidopsis MHP1, a homologue of yeast Mpo1, is involved in ABA signaling.
Potential of Producing Flavonoids Using Cyanobacteria As a Sustainable Chassis.
Multidimensional analysis of actin depolymerising factor family in pigeon pea under different environmental stress revealed specific response genes in each subgroup.
Magnetically immobilized edible Bacillus natto for the biotransformation of polydatin to resveratrol and its bioactivity assessment
CcCIPK14 Gene Function Analysis to Illuminate the Efficient Root Transgenic System.