Area of research
Renewable Energy, Sustainability and the Environment · Water Science and Technology
Research interest
Research interests include Biology, Gene, Genetics, Citrus limon, RNase P, and Pollination.
The lemon genome and DNA methylome unveil epigenetic regulation of citric acid biosynthesis during fruit development
Genome-wide analysis of the S-phase kinase-association protein 1 (ClSKP1) family and the role of S-RNase targeting by an SCF (Cullin1-SKP1-F-box) complex in the self-incompatibility of ‘Xiangshui’ lemon
Four ClEF1A genes involved in self-incompatibility in 'Xiangshui Lemon' confer early fowering and increase stress tolerance in transgenic Arabidopsis
ATP Citrate Lyase ClACLB-1 Facilitates Citrate Cleavage in Lemon
Identification of Fenton-like active Cu sites by heteroatom modulation of electronic density
Genome-Wide Analysis of the RNase T2 Family and Identification of Interacting Proteins of Four ClS-RNase Genes in ‘XiangShui’ Lemon
Proteomic analysis of ubiquitinated proteins in ‘Xiangshui’ lemon [Citrus limon (L.)] pistils after self- and cross-pollination
Rapid field testing of mercury pollution by designed fluorescent biosensor and its cells-alginate hydrogel-based paper assay
Selective electrochemical CO2 reduction on Cu-Pd heterostructure
ClPLD5, a phospholipase gene is involved in protection of cytoskeleton stability in pollen of self-imcompatible ‘Xiangshui’ lemon (Citrus limon)
Two Genes (ClS1 and ClF-box) Involved the Self-Incompatibility of ”Xiangshui” Lemon (Citrus limon (L.) Burm. f.)
Characterization of the ‘Xiangshui’ lemon transcriptome by de novo assembly to discover genes associated with self-incompatibility
Selection of reference genes for real-time quantitative PCR studies of kumquat in various tissues and under abiotic stress
Mechanism of seedlessness in a new lemon cultivar ‘Xiangshui’ [Citrus limon (L.) Burm. F.]