Area of research
Soil Science · Agronomy and Crop Science
Research interest
Research interests include Agronomy, Straw, Yield (engineering), Human fertilization, Photosynthesis, and Residue (chemistry).
Enhancement joint fertilization efficacy of straw and nitrogen fertilizer on soil quality and seedcotton yield for sustainable cotton farming
The trade-off between root growth redundancy and premature senescence under different straw returning modes affects boll formation and seedcotton yield
Poly-L-Lactic Acid Reduces the Volume of Dermal Adipose Tissue Through its Metabolite Lactate
Straw-derived biochar incorporation improves seedcotton yield and fiber quality by optimizing photosynthetic carbon and nutrients partitioning and boll formation patterns
Phosphorus application under continuous wheat-cotton straw retention enhanced cotton root productivity and seedcotton yield by improving the carbohydrate metabolism of root
TCEB2/HIF1A signaling axis promotes chemoresistance in ovarian cancer cells by enhancing glycolysis and angiogenesis
Optimized nitrogen allocation in cotton-soil system improves cotton production and nitrogen utilization efficiency under wheat-cotton straw return in East China
External carbon addition alters soil photosynthetic carbon accumulation and rhizosphere processes of carbon
Efficient cotton population photosynthetic production synergistically increases seedcotton yield and fiber quality through straw incorporation with appropriate nitrogen fertilization in wheat-cotton rotation system
Long-term residue retention affects seedcotton yield by regulating distribution of photosynthetic carbon, boll capacity of the root system and soil quality
Continuous wheat-cotton residue incorporation combined with potassium fertilizer improved cotton root production capacity and constructed an optimized photosynthate distribution structure for high seedcotton yield