Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Biology, Gene, Transcriptome, Primordium, Botany, and Panicle.
Comprehensive analysis of non-coding RNAs in the ovaries of high and low egg production hens
Synergistic Effects of Supplemental Lighting and Foliar Phosphorus Application on Flowering in Passion Fruit (Passiflora edulis)
ERF transcription factors govern anthocyanin biosynthesis in litchi pericarp by modulating the expression of anthocyanin biosynthesis genes
The MaNAP1-MaMADS1 transcription factor module mediates ethylene-regulated peel softening and ripening in banana
A calmodulin-like protein PvCML9 negatively regulates salt tolerance
High Muscle Expression of IGF2BP1 Gene Promotes Proliferation and Differentiation of Chicken Primary Myoblasts: Results of Transcriptome Analysis
Histone modification H3K27me3 is essential during chilling-induced flowering in <i>Litchi chinensis</i>
Effects of shading on photosynthetic characteristics of wax apple leaves
Function of LcAGL19 in the flowering regulation of Arabidopsis and Litchi chinensis
Identification of Chilling Accumulation-Associated Genes for Litchi Flowering by Transcriptome-Based Genome-Wide Association Studies
Identification of Chilling-Responsive Genes in Litchi chinensis by Transcriptomic Analysis Underlying Phytohormones and Antioxidant Systems
Effects of cytokinin and abscisic acid on heat resistance of Vetiveria zizanioides
LcNAC13 Is Involved in the Reactive Oxygen Species-Dependent Senescence of the Rudimentary Leaves in Litchi chinensis
Genome-Wide Transcriptomic Analysis Reveals a Regulatory Network of Oxidative Stress-Induced Flowering Signals Produced in Litchi Leaves
Comparative proteomics of phloem exudates reveals long-distance signals potentially involved in Litchi chinensis flowering
Genome-wide transcriptome analysis reveals the molecular mechanism of high temperature-induced floral abortion in Litchi chinensis
Effects of Shading on Carbohydrates of Syzygium samarangense
Identification of Genes Involved in Low Temperature-Induced Senescence of Panicle Leaf in Litchi chinensis
Genome encode analyses reveal the basis of convergent evolution of fleshy fruit ripening
Reactive oxygen species and nitric oxide induce senescence of rudimentary leaves and the expression profiles of the related genes in Litchi chinensis
Litchi Flowering is Regulated by Expression of Short Vegetative Phase Genes
Genome Encode Analyses Reveal the Basis of Convergent Evolution of Fleshy Fruit
Identification of Nitric Oxide Responsive Genes in the Rudimentary Leaves of Litchi chinensis
Drought Stress Induces Flowering and Enhances Carbohydrate Accumulation in Averrhoa Carambola
RNA-seq analysis of apical meristem reveals integrative regulatory network of ROS and chilling potentially related to flowering in Litchi chinensis
The fruitENCODE project sheds light on the genetic and epigenetic basis of convergent evolution of climacteric fruit ripening
LcMCII-1 is involved in the ROS-dependent senescence of the rudimentary leaves of Litchi chinensis
Low temperature-induced leaf senescence and the expression of senescence-related genes in the panicles of Litchi chinensis
De novo transcriptome assembly for rudimentary leaves in Litchi chinesis Sonn. and identification of differentially expressed genes in response to reactive oxygen species
Carbohydrate Accumulation and Flowering-related Gene Expression Levels at Different Developmental Stages of Terminal Shoots in Litchi chinensis