Area of research
Molecular Biology · Plant Science
Research interest
Research interests include Advanced biosensing and bioanalysis techniques, Plant biochemistry and biosynthesis, Tea Polyphenols and Effects, and Plant responses to water stress.
Volatile organic compound emission profiles of banker plants and their effects on natural enemy attraction and insect community structures in agro-ecosystems.
Photoluminescence and switchable dielectric properties of (R/S-3-hydroxypiperidinium)MnCl3 with high-temperature phase transitions
Role of AMP-activated protein kinase in regulating hatching of Nilaparvata lugens.
Dynamics of linalool and its derivatives enantiomers in <i>Camellia sinensis</i> var. <i>A</i> <i>ssamica</i> "Hainan dayezhong".
<i>Megalurothrips usitatus</i> Feeding-Induced <i>De Novo</i> Synthesis of the C8 Volatiles 1-Octen-3-ol and 2-Ethyl-1-hexanol in Cowpea Plants Regulates Plant-Herbivore-Predator Interactions.
Floral Volatile Organic Compound Profiles of Eco-Functional Plants Shape Plant-Insect Interactions and Their Community Structures in Wheat Agroecosystems.
Comprehensive Identification and Expression Analysis of the Multidrug and Toxic Compound Extrusion (MATE) Gene Family in Brachypodium distachyon
Plants attacked above-ground by leaf-mining flies change below-ground microbiota to enhance plant defense.
Effects of weather parameters on the population dynamics of Megalurothrips usitatus in cowpea fields in Sanya, China
TTD: <i>Therapeutic Target Database</i> describing target druggability information
Calcium-dependent activation of CPK12 facilitates its cytoplasm-to-nucleus translocation to potentiate plant hypoxia sensing by phosphorylating ERF-VII transcription factors
SingPro: a knowledge base providing single-cell proteomic data
Understanding of formation and change of chiral aroma compounds from tea leaf to tea cup provides essential information for tea quality improvement.
Formation of 8-hydroxylinalool in tea plant <i>Camellia sinensis</i> var. <i>Assamica</i> 'Hainan dayezhong'.
Roles of necroptosis in alcoholic liver disease and hepatic pathogenesis
NAC-mediated membrane lipid remodeling negatively regulates fruit cold tolerance
<scp>MYB30</scp> integrates light signals with antioxidant biosynthesis to regulate plant responses during postsubmergence recovery
Therapeutic target database update 2022: facilitating drug discovery with enriched comparative data of targeted agents
Phosphatidic acid modulates MPK3- and MPK6-mediated hypoxia signaling in Arabidopsis
Activation of UQCRC2-dependent mitophagy by tetramethylpyrazine inhibits MLKL-mediated hepatocyte necroptosis in alcoholic liver disease
Persulfidation of Nitrate Reductase 2 Is Involved in l-Cysteine Desulfhydrase-Regulated Rice Drought Tolerance
Pterostilbene attenuates RIPK3-dependent hepatocyte necroptosis in alcoholic liver disease via SIRT2-mediated NFATc4 deacetylation
Elucidation of the Regular Emission Mechanism of Volatile β-Ocimene with Anti-insect Function from Tea Plants (<i>Camellia sinensis</i>) Exposed to Herbivore Attack.
NFATc4 mediates ethanol-triggered hepatocyte senescence
Induction of Sestrin2 by pterostilbene suppresses ethanol-triggered hepatocyte senescence by degrading CCN1 via p62-dependent selective autophagy
Comparison on the Nutrient Plunder Capacity of Orychophragmus violaceus and Brassica napus L. Based on Electrophysiological Information
New insights into the role of lipids in plant hypoxia responses
Low temperature synergistically promotes wounding-induced indole accumulation by INDUCER OF CBF EXPRESSION-mediated alterations of jasmonic acid signaling in Camellia sinensis.
Enzyme Catalytic Efficiencies and Relative Gene Expression Levels of (<i>R</i>)-Linalool Synthase and (<i>S</i>)-Linalool Synthase Determine the Proportion of Linalool Enantiomers in <i>Camellia sinensis</i> var. <i>sinensis</i>.
The Anaerobic Product Ethanol Promotes Autophagy-Dependent Submergence Tolerance in Arabidopsis