Area of research
Genetics · Plant Science
Research interest
Research focused on DNA methylation and Chatbot, with related work in Salicylic acid, Phosphorus, Heading (navigation). Notable publications include 'MeCP2 Regulates PTCH1 Expression Through DNA Methylation in Rheumatoid Arthritis', 'Multimodal machine learning enables AI chatbot to diagnose ophthalmic diseases and provide high-quality medical responses', and 'A unique aluminum resistance mechanism conferred by aluminum and salicylic-acid-activated root efflux of benzoxazinoids in maize'.
Multimodal machine learning enables AI chatbot to diagnose ophthalmic diseases and provide high-quality medical responses
An Antagonism Between Ethylene Signaling and DNA Methylation Orchestrates the Progression of Leaf Senescence in Non‐heading Chinese Cabbage
Association of Life’s Crucial 9 with all-cause and cardiovascular mortality in stroke survivors and predictive value for mortality compared with Life’s Essential 8: evidence from NHANES 2005–2018
Sirolimus versus mycophenolate mofetil for the treatment of lupus nephritis: Results from a real-world CSTAR cohort study
Additional file 2 of Integrated single-molecule real-time sequencing and RNA sequencing reveal the molecular mechanisms of salt tolerance in a novel synthesized polyploid genetic bridge between maize and its wild relatives
Shallower Root Spatial Distribution Induced by Phosphorus Deficiency Contributes to Topsoil Foraging and Low Phosphorus Adaption in Sugarcane (Saccharum officinarum L.)
Nudivirus Remnants in the Genomes of Arthropods
A unique aluminum resistance mechanism conferred by aluminum and salicylic-acid-activated root efflux of benzoxazinoids in maize
MeCP2 Regulates PTCH1 Expression Through DNA Methylation in Rheumatoid Arthritis