Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Biology, Gene, Botany, Brassica rapa, Arabidopsis, and Transcriptome.
The chromosome‐level genome assembly of <i>Cananga odorata</i> provides insights into its evolution and terpenoid biosynthesis
The evolution and functional divergence of FT-related genes in controlling flowering time in Brassica rapa ssp. rapa
ICE1 interacts with IDD14 to transcriptionally activate <i>QQS</i> to increase pollen germination and viability
High Muscle Expression of IGF2BP1 Gene Promotes Proliferation and Differentiation of Chicken Primary Myoblasts: Results of Transcriptome Analysis
Extracting visual navigation line between pineapple field rows based on an enhanced YOLOv5
Human agricultural activities influence the flowering time of turnip in the Qinghai-Tibet Plateau
Physiological and rhizospheric response characteristics to cadmium of a newly identified cadmium accumulator Coreopsis grandiflora Hogg. (Asteraceae)
Prediction of internal mechanical damage in pineapple compression using finite element method based on Hooke's and Hertz's laws
Cold Response Transcriptome Analysis of the Alternative Splicing Events Induced by the Cold Stress in D. catenatum
A Multi-Flexible-Fingered Roller Pineapple Harvesting Mechanism
Quantitative Succinyl-Proteome Profiling of Turnip (Brassica rapa var. rapa) in Response to Cadmium Stress
Comparative transcriptome analysis reveals ecological adaption of cold tolerance in northward invasion of Alternanthera philoxeroides
Grafting improves drought stress memory by increasing the P5CS1 gene expression in Brassica rapa
The glutamate receptors AtGLR1.2 and AtGLR1.3 increase cold tolerance by regulating jasmonate signaling in Arabidopsis thaliana
Effect of vernalization on tuberization and flowering in the Tibetan turnip is associated with changes in the expression of FLC homologues
Functional FRIGIDA allele enhances drought tolerance by regulating the P5CS1 pathway in Arabidopsis thaliana
Disruption of AtWNK8 Enhances Tolerance of Arabidopsis to Salt and Osmotic Stresses via Modulating Proline Content and Activities of Catalase and Peroxidase
Identification and expression analysis of the Glycine max CYP707A gene family in response to drought and salt stresses