Area of research
Plant Science · Agronomy and Crop Science
Research interest
Research interests include Panicle, Agronomy, Sugar, Nitrogen, Sink (geography), and Sucrose.
One-time application of controlled-release blended fertilizer increases rice yield and nitrogen utilization by optimizing root morphological trait distribution and nitrogen uptake
Single-time fertilization of controlled release blended fertilizer optimizes soil nitrogen distribution and root characteristics to increase conventional japonica rice (Oryza sativa L.) grain yield and nitrogen use efficiency
Cytokinin-induced bud outgrowth depends on sugar metabolism and signalling
Increasing double-peak nitrogen release from controlled-release blended fertilizer boosts uptake efficiency and yield in late japonica rice in Yangtze River Delta
Application of slow-controlled release fertilizer coordinates the carbon flow in carbon-nitrogen metabolism to effect rice quality
Sugar Transport and Signaling in Shoot Branching
The Inferior Grain Filling Initiation Promotes the Source Strength of Rice Leaves
Glucose-6-Phosphate Dehydrogenases: The Hidden Players of Plant Physiology
Uniconazole enhances lodging resistance by increasing structural carbohydrate and sclerenchyma cell wall thickness of japonica rice (Oryza sativa L.) under shading stress
Sink Strength Promoting Remobilization of Non-Structural Carbohydrates by Activating Sugar Signaling in Rice Stem during Grain Filling
Delayed Sowing Date Improves Rice Cooking and Taste Quality by Regulating the Quantity and Quality of Grains Located on Secondary Branches
Efficiency of Sucrose to Starch Metabolism Is Related to the Initiation of Inferior Grain Filling in Large Panicle Rice
The Initiation of Inferior Grain Filling is Affected by Sugar Translocation Efficiency in Large Panicle Rice
Sucrose is involved in the regulation of iron deficiency responses in rice (Oryza sativa L.)