Area of research
Soil Science · Plant Science
Research interest
Research interests include Agronomy, Fertilizer, Biochar, Nitrogen, Chemistry, and Manure.
Genome-wide identification of invertase genes in sweetpotato and its response to nitrogen and planting densities
Ecological benefits of integrating broadleaf tree species into Pinus massoniana monocultures and their impacts on soil fertility microbial diversity and network stability
Relationships between grain quality and leaf carbon and nitrogen status in high-quality hybrid rice across different sowing dates and nitrogen management
Impacts of Long‐Term Thinning and Mixed Plantation Practices of Broadleaf Trees on Soil Carbon, Nitrogen Dynamics, and Microbial Function in <i>Eucalyptus</i> Forests
Accumulation characteristics of plant flavonoids and effects of cultivation measures on their biosynthesis: A review
Integrons in the Age of Antibiotic Resistance: Evolution, Mechanisms, and Environmental Implications: A Review
Autumnal Potassium Induced Modulations in Plant Osmoprotectant Substances, Nutrient Stoichiometry and Precision Sustainable Seedling Cultivation in Parashorea chinensis
Geographical variation and genetic diversity of Parashorea chinensis germplasm resources
Physiological and Proteomic Analysis of Various Priming on Rice Seed under Chilling Stress
Analysis of physiological response and differential protein expression of <i>Paramichelia baillonii</i> saplings under phosphorus deficiency
Impacts of shifting from single-species pine forests to distinct agroforestry models on soil fertility, exchangeable cations, and microbial functions
Stability differences of quality traits in high-quality hybrid rice
Ecological impacts of diversified agroforestry on soil nutrients and bacterial communities in Pinus massoniana plantations in the southern subtropics
Phenolic Acid Concentration and Adsorption in the Soil of Monoculture Eucalyptus and Acacia Mangium Plantations Versus Species Mixtures in Subtropical Forests
Growth, physiological and N, P, K accumulation responses of Erythropalum scandens Bl. Seedlings under different substrates
Effects of various seed priming on morphological, physiological, and biochemical traits of rice under chilling stress
Integrating low levels of organic fertilizer improves soil fertility and rice yields in paddy fields by influencing microbial communities without increasing CH4 emissions
Response of soil nutrients, enzyme activities, and fungal communities to biochar availability in the rhizosphere of mountainous apple trees
Dynamics of rhizosphere bacterial communities and soil physiochemical properties in response to consecutive ratooning of sugarcane
Partial Substitution of Urea with Biochar Induced Improvements in Soil Enzymes Activity, Ammonia-Nitrite Oxidizers, and Nitrogen Uptake in the Double-Cropping Rice System
Enhancing Rice Yield and Nitrogen Utilization Efficiency through Optimal Planting Density and Reduced Nitrogen Rates
Soil C, N, P, K and Enzymes Stoichiometry of an Endangered Tree Species, Parashorea chinensis of Different Stand Ages Unveiled Soil Nutrient Limitation Factors
Increasing grain weight and yield stability by increasing pre-heading non-structural carbohydrate reserves per spikelet in short-growth duration rice
Biofertilizers to Improve Soil Health and Crop Yields
Biochar Amendment and Nitrogen Fertilizer Contribute to the Changes in Soil Properties and Microbial Communities in a Paddy Field
Irrigation and Nitrogen Fertilization Alter Soil Bacterial Communities, Soil Enzyme Activities, and Nutrient Availability in Maize Crop
Combined Application of Manure and Chemical Fertilizers Alters Soil Environmental Variables and Improves Soil Fungal Community Composition and Rice Grain Yield
Partial Substitution of Organic Fertilizer with Chemical Fertilizer Improves Soil Biochemical Attributes, Rice Yields and Restores Bacterial Community Diversity in a Paddy Field
Manure applications combined with chemical fertilizer improves soil functionality, microbial biomass and rice production in a paddy field
Nitrogen fertilization coupled with foliar application of iron and molybdenum improves shade tolerance of soybean under maize-soybean intercropping