Area of research
Plant Science · Pathology and Forensic Medicine
Research interest
Research interests include Biology, Camellia sinensis, Chemistry, Aril, Invertase, and Phloem.
An improved fluorescein diacetate–propidium iodide staining system for assessing microspore and pollen viability at different developmental stages
Potassium alleviates fluoride accumulation and enhances fluoride tolerance in Camellia sinensis
The fluoride exporter (CsFEX) regulates fluoride uptake/accumulation in Camellia sinensis under different pH
Dietary phytosterols improves the metabolic status of perinatal cows as evidenced by plasma metabolomics and faecal microbial metabolism
Quality components identification and formation analysis of tea (Camellia sinensis L.) flower beverages from three cultivars
Integrated metabolome and transcriptome analysis reveals the cause of anthocyanin biosynthesis deficiency in litchi aril
Camellia sinensis small GTPase gene (CsRAC1) involves in response to salt stress, drought stress and ABA signaling pathway
Multiomic Analyses Reveal the Effects of Supplementing Phytosterols on the Metabolic Function of the Rumen Microbiota in Perinatal Cows
Systematic Methods for Isolating High Purity Nuclei from Ten Important Plants for Omics Interrogation
Transcriptome analysis reveals the roles of phytohormone signaling in tea plant (Camellia sinensis L.) flower development
Identification and response analysis of xyloglucan endotransglycosylase/hydrolases (XTH) family to fluoride and aluminum treatment in Camellia sinensis
MicroRNA Omics Analysis of Camellia sinesis Pollen Tubes in Response to Low-Temperature and Nitric Oxide
Genome-wide identification and expression analysis of the CLC superfamily genes in tea plants (Camellia sinensis)
<i>CsFEX</i>, a Fluoride Export Protein Gene from <i>Camellia sinensis</i>, Alleviates Fluoride Toxicity in Transgenic <i>Escherichia coli</i> and <i>Arabidopsis thaliana</i>
Aberrant seed development in Litchi chinensis is associated with the impaired expression of cell wall invertase genes
Biosynthesis of quebrachitol, a transportable photosynthate, in Litchi chinensis
Methyl-inositol, <b>γ</b>-aminobutyric acid and other health benefit compounds in the aril of litchi
Sugar Uptake in the Aril of Litchi Fruit Depends on the Apoplasmic Post-Phloem Transport and the Activity of Proton Pumps and the Putative Transporter LcSUT4