Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Biology, Oryza sativa, Mutant, Arsenic, Arabidopsis, and Pi.
Comprehensive virome analysis of soybean agroecosystems in China reveals geographic patterns and interfacial virus spillovers
Epidemiological evaluation and identification of the insect vector of soybean stay-green associated virus
Mutation of OsLPR3 Enhances Tolerance to Phosphate Starvation in Rice
Advances in molecular mechanisms underlying cadmium uptake and translocation in rice
NH787 EMS mutant of rice variety Nagina22 exhibits higher phosphate use efficiency
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
Expression of New <i>Pteris vittata</i> Phosphate Transporter PvPht1;4 Reduces Arsenic Translocation from the Roots to Shoots in Tobacco Plants
Mutation of the chloroplast‐localized phosphate transporter OsPHT2;1 reduces flavonoid accumulation and UV tolerance in rice
Phosphate Transporter <i><i>PvPht1;2</i></i> Enhances Phosphorus Accumulation and Plant Growth without Impacting Arsenic Uptake in Plants
OsPHR3 affects the traits governing nitrogen homeostasis in rice
OsSIZ2 regulates nitrogen homeostasis and some of the reproductive traits in rice
Knocking Out <i>OsPT4</i> Gene Decreases Arsenate Uptake by Rice Plants and Inorganic Arsenic Accumulation in Rice Grains
OsSIZ2 exerts regulatory influences on the developmental responses and phosphate homeostasis in rice
Identification and expression analysis of OsLPR family revealed the potential roles of OsLPR3 and 5 in maintaining phosphate homeostasis in rice