Area of research
Molecular Biology · Pathology and Forensic Medicine
Research interest
Research interests include Photosynthetic Processes and Mechanisms, Plant Gene Expression Analysis, Tea Polyphenols and Effects, and Plant Molecular Biology Research.
The transcription factor CsPAT1 from tea plant (Camellia sinensis) is involved in drought tolerance by modulating phenylpropanoid biosynthesis
Carotenoids accumulation and transcript profiling of carotenoid biosynthesis and degradation genes in new shoots and mature leaves of tea plants
Circadian rhythm effects of different light qualities on photosynthesis and PHY gene family in tea plants
Preparation of Tea Tree Oil Microcapsules and Their Effects on Strawberry Preservation During Storage
High-throughput transcriptomic analysis of circadian rhythm of flavonoid metabolism under different photoperiods in celery
Expression Regulatory Mechanisms of the Key Structural Genes in the Carotenoid Biosynthesis Pathway Under Salt Stress of Lycium barbarum
High-throughput transcriptomic analysis of circadian rhythm under different photoperiods in carrot
Pile-fermentation mechanism of ripened Pu-erh tea: Omics approach, chemical variation and microbial effect
Differential Response of MYB Transcription Factor Gene Transcripts to Circadian Rhythm in Tea Plants (Camellia sinensis)
<scp>CsPAT1</scp>, a <scp>GRAS</scp> transcription factor, promotes lignin accumulation by antagonistic interacting with <scp>CsWRKY13</scp> in tea plants
Circadian rhythm response and its effect on photosynthetic characteristics of the Lhcb family genes in tea plant
Interference of skeleton photoperiod in circadian clock and photosynthetic efficiency of tea plant: in-depth analysis of mathematical model
High-Throughput Transcriptomic Analysis of Circadian Rhythm of Chlorophyll Metabolism under Different Photoperiods in Tea Plants
Ectopic biosynthesis of catechin of tea plant can be completed by co-expression of the three <i>CsANS</i>, <i>CsLAR</i>, and <i>CsANR</i> genes
Molecular markers in tea plant (Camellia sinensis): Applications to evolution, genetic identification, and molecular breeding
Overexpressing CsPSY1 Gene of Tea Plant, Encoding a Phytoene Synthase, Improves α-Carotene and β-Carotene Contents in Carrot
Exogenous methyl jasmonate and cytokinin antagonistically regulate lignin biosynthesis by mediating CsHCT expression in Camellia sinensis