Area of research
Soil Science · Ecology
Research interest
Research focused on Mineralization (soil science) and Soil water, with related work in Soil carbon, Environmental chemistry, Environmental science. Notable publications include 'Rice paddy soils are a quantitatively important carbon store according to a global synthesis', 'Microplastics shape microbial communities affecting soil organic matter decomposition in paddy soil', and 'Paddy soils have a much higher microbial biomass content than upland soils: A review of the origin, mechanisms, and drivers'.
Carbon stabilization by iron plaque on rice roots: The role of oxygen loss
Microbial strategies regulate organic carbon accumulation in saline paddy soils: A millennium chronosequence
Phages Affect Soil Dissolved Organic Matter Mineralization by Shaping Bacterial Communities
Microbial diversity loss and plant genotype modulates rhizosphere microbial β-diversity to constrain soil functioning
Loss of protistan diversity weakens soil phosphorus availability
Frequency and C:N:P stoichiometry of organic inputs determines intensity of net C balance in paddy soils
Decoding soil health constraints in regional agroecosystems: Machine learning reveals microbial enzymatic thresholds and drivers
Straw-mediated CH4 production via distinct methanogenic pathways in two paddy soils
Microbial mechanisms of organic matter mineralization induced by straw in biochar-amended paddy soil
Iron mineral type controls organic matter stability and priming in paddy soil under anaerobic conditions
Bacterial necromass determines the response of mineral-associated organic matter to elevated CO2
Mitigating methane emissions and carbon footprint in rice-wheat rotation system by straw centralized returning under rainfed conditions
Contrasting viral diversity and potential biogeochemical impacts in paddy and upland soils
Coupling of microbial-explicit model and machine learning improves the prediction and turnover process simulation of soil organic carbon
Intensive N2 fixation accelerates microbial turnover in cropland soils
Microbial response to long-term fertilization of paddy soils: Apparent and real priming effects
Synergistic effect of microplastics and cadmium on microbial community and functional taxa in wheat rhizosphere soil
Physicochemically protected organic carbon release is the rate-limiting step of rhizosphere priming in paddy soils
Iron–organic carbon associations stimulate carbon accumulation in paddy soils by decreasing soil organic carbon priming
Distribution of microplastics in soil aggregates after film mulching
Residence time of carbon in paddy soils
Long-term fertilization suppresses rice pathogens by microbial volatile compounds
Combining water-saving and drought-resistant rice with plastic film mulching mitigates CH4 emissions with higher net economic benefits
Microplastics shape microbial communities affecting soil organic matter decomposition in paddy soil
Microplastics in soil can increase nutrient uptake by wheat
Visualization and quantification of carbon “rusty sink” by rice root iron plaque: Mechanisms, functions, and global implications
Microplastics affect activity and spatial distribution of C, N, and P hydrolases in rice rhizosphere
Experimental evidence for the impact of phages on mineralization of soil-derived dissolved organic matter under different temperature regimes
Deciphering differences in microbial community composition and multifunctionality between healthy and Alternaria solani-infected potato rhizosphere soils
Sources and intensity of CH4 production in paddy soils depend on iron oxides and microbial biomass