Area of research
Plant Science · Soil Science
Research interest
Research interests include Plant Micronutrient Interactions and Effects, Soil Carbon and Nitrogen Dynamics, Aluminum toxicity and tolerance in plants and animals, and Heavy metals in environment.
The balance between microbial arsenic methylation and demethylation in paddy soils underpins global arsenic risk and straighthead disease in rice
Soil is a major contributor to global greenhouse gas emissions and climate change
Healthy soil for healthy humans and a healthy planet
Soil Carbon Sequestration: Much More Than a Climate Solution
Applications and opportunities of click chemistry in plant science
Mapping Phosphorus Availability in Soil at a Large Scale and High Resolution Using Novel Diffusive Gradients in Thin Films Designed for X-ray Fluorescence Microscopy
Ensuring planetary survival: the centrality of organic carbon in balancing the multifunctional nature of soils
Microspectroscopic visualization of how biochar lifts the soil organic carbon ceiling
Widespread Occurrence of the Highly Toxic Dimethylated Monothioarsenate (DMMTA) in Rice Globally
Nutrient accumulation and transcriptome patterns during grain development in rice
Fast X-ray fluorescence microscopy provides high-throughput phenotyping of element distribution in seeds
Soil carbon, nitrogen, and biotic properties after long-term no-till and nitrogen fertilization in a subtropical Vertisol
Translocation of Foliar Absorbed Zn in Sunflower (Helianthus annuus) Leaves
Soil organic carbon is significantly associated with the pore geometry, microbial diversity and enzyme activity of the macro-aggregates under different land uses
The Voltaic Effect as a Novel Mechanism Controlling the Remobilization of Cadmium in Paddy Soils during Drainage
Probing the nature of soil organic matter
Dynamics of Dimethylated Monothioarsenate (DMMTA) in Paddy Soils and Its Accumulation in Rice Grains
Long-term changes in land use influence phosphorus concentrations, speciation, and cycling within subtropical soils
Chemical Speciation and Distribution of Cadmium in Rice Grain and Implications for Bioavailability to Humans
The within-field spatial variation in rice grain Cd concentration is determined by soil redox status and pH during grain filling
The role of soil in defining planetary boundaries and the safe operating space for humanity
Increased arsenic mobilization in the rice rhizosphere is mediated by iron-reducing bacteria
Methods to Visualize Elements in Plants
Producing Cd-safe rice grains in moderately and seriously Cd-contaminated paddy soils
Stable isotope fractionation of cadmium in the soil-rice-human continuum
Effect of long-term no-tillage and nitrogen fertilization on phosphorus distribution in bulk soil and aggregates of a Vertisol
Silver Sulfide Nanoparticles Reduce Nitrous Oxide Emissions by Inhibiting Denitrification in the Earthworm Gut
Application of sewage sludge containing environmentally-relevant silver sulfide nanoparticles increases emissions of nitrous oxide in saline soils
Release of silver from nanoparticle-based filter paper and the impacts to mouse gut microbiota
Soil and the intensification of agriculture for global food security