Area of research
Cell Biology · Plant Science
Research interest
Research focused on Camellia sinensis and Calcium, with related work in AMPK, Chronosequence, Multiple drug resistance. Notable publications include 'Promoting the Calcium-Uptake Bioactivity of Casein Phosphopeptides in vitro and in vivo', 'Abnormal saccharides affecting cancer multi-drug resistance (MDR) and the reversal strategies', and 'Black tea affects obesity by reducing nutrient intake and activating AMP-activated protein kinase in mice'.
Combining resistance indicators, metabolomes and transcriptomes to reveal correlations in disease and cold resistance in tea plant and analyze the key domain NB-ARC
Cytological Observation of Distant Hybridization Barrier and Preliminary Investigation of Hybrid Offspring in Tea Plants
Metabarcoding of organic tea (Camellia sinensis L.) chronosequence plots elucidates soil acidification-induced shifts in microbial community structure and putative function
Metabolome and Microbiome Signatures in the Leaves of Wild Tea Plant Resources Resistant to Pestalotiopsis theae
Promoting the Calcium-Uptake Bioactivity of Casein Phosphopeptides in vitro and in vivo
Abnormal saccharides affecting cancer multi-drug resistance (MDR) and the reversal strategies
Black tea affects obesity by reducing nutrient intake and activating AMP-activated protein kinase in mice