Area of research
Environmental Engineering · Ocean Engineering
Research interest
Research focused on Oryza sativa and Arabidopsis, with related work in Cross-sectional study, Supercapacitor, Chloroplast. Notable publications include 'Association between social support and health-related quality of life among Chinese seafarers: A cross-sectional study', 'Hierarchical porous 3D Ni3N-CoN/NC heterojunction nanosheets with nitrogen vacancies for high-performance flexible supercapacitor', and 'Mutation of the chloroplast‐localized phosphate transporter OsPHT2;1 reduces flavonoid accumulation and UV tolerance in rice'.
De novo assembly of the mitochondrial genome of Glycyrrhiza glabra and identification of two types of homologous recombination configurations caused by repeat sequences
Hierarchical porous 3D Ni3N-CoN/NC heterojunction nanosheets with nitrogen vacancies for high-performance flexible supercapacitor
Diagnosis, differential diagnosis, and treatment for sudden sensorineural hearing loss: Current otolaryngology practices in China
Mutation of OsLPR3 Enhances Tolerance to Phosphate Starvation in Rice
Management of pouch neoplasia: consensus guidelines from the International Ileal Pouch Consortium
Tumor microenvironment in pancreatic ductal adenocarcinoma: Implications in immunotherapy
OsTGAL1 suppresses the resistance of rice to bacterial blight disease by regulating the expression of salicylic acid glucosyltransferase OsSGT1
Overexpression of OsPHT1;4 Increases Phosphorus Utilization Efficiency and Improves the Agronomic Traits of Rice cv. Wuyunjing 7
Essentiality for rice fertility and alternative splicing of OsSUT1
The ferroxidase LPR5 functions in the maintenance of phosphate homeostasis and is required for normal growth and development of rice
<scp><i>OsSQD1</i></scp> at the crossroads of phosphate and sulfur metabolism affects plant morphology and lipid composition in response to phosphate deprivation
OsPDR2 mediates the regulation on the development response and maintenance of Pi homeostasis in rice
Mutation of the chloroplast‐localized phosphate transporter OsPHT2;1 reduces flavonoid accumulation and UV tolerance in rice
OsPHR3 affects the traits governing nitrogen homeostasis in rice
OsSIZ2 regulates nitrogen homeostasis and some of the reproductive traits in rice
Association between social support and health-related quality of life among Chinese seafarers: A cross-sectional study
OsSIZ2 exerts regulatory influences on the developmental responses and phosphate homeostasis in rice