Area of research
Pollution · Nutrition and Dietetics
Research interest
Research interests include Heavy metals in environment, Plant Micronutrient Interactions and Effects, Selenium in Biological Systems, and Heavy Metal Exposure and Toxicity.
Selenium solubilization by Bacillus sp. S01: Mechanistic insights and environmental implications in paddy soils
Water regime management reduces pest infestations and cadmium content in rice in paddy ecosystems
Foliar spraying of a novel biosynthesized nano-selenium: Enhancing cadmium reduction in rice grains and regulating in-vitro bioavailability with mechanistic insights
Trichoderma harzianum DAA8 and Trichoderma asperellum LDA4 synergistically enhance cadmium and chromium phytoextraction by king grass and Sedum alfredii in co-contaminated soils
Bacillus amyloliquefaciens G02 enhances selenium uptake in lettuce (Lactuca sativa) by improving soil selenium availability and rhizosphere microbiome regulation
Insight into the mechanism of nano-TiO2-doped biochar in mitigating cadmium mobility in soil-pak choi system
Relative bioavailability of selenium in rice using a rat model and its application to human health risk assessment
Biochar performance for preventing cadmium and arsenic accumulation, and the health risks associated with mustard (Brassica juncea) grown in co-contaminated soils
Microcystins-Loaded Aged Nanoplastics Provoke a Metabolic Shift in Human Liver Cells
Manganese (II) sulfate affects the formation of iron-manganese oxides in soil and the uptake of cadmium and arsenic by rice
Potential disintegration and transport of biochar in the soil-water environment: A case study towards purple soil
Effect of Foliar Spraying of Gibberellins and Brassinolide on Cadmium Accumulation in Rice
Arbuscular mycorrhizal fungi improve selenium uptake by modulating root transcriptome of rice (Oryza sativa L.)
Changes in the Microbiome of Sugarcane (Saccharum spp. Hybrids.) Rhizosphere in Response to Manganese Toxicity
Microplastics benefit bacteria colonization and induce microcystin degradation
Application of Exogenous Iron Alters the Microbial Community Structure and Reduces the Accumulation of Cadmium and Arsenic in Rice (Oryza sativa L.)
Achieving simultaneous removal of nitrogen and phosphorus in sediment via combined adsorption and oxygen supplement
Silkworm excrement reduces cadmium and arsenic accumulation in rice grains by altering soil chemical properties, microbial community, and promoting iron plaque formation
Characteristics and comparative analysis of Mesona chinensis Benth chloroplast genome reveals DNA barcode regions for species identification
Effects of foliar applications of Brassinolide and Selenium on the accumulation of Arsenic and Cadmium in rice grains and an assessment of their health risk
Fate of dissolved inorganic nitrogen in turbulent rivers: The critical role of dissolved oxygen levels
Arbuscular Mycorrhizal Fungal Inoculation Increases Organic Selenium Accumulation in Soybean (Glycine max (Linn.) Merr.) Growing in Selenite-Spiked Soils
Discovery and engineering of small SlugCas9 with broad targeting range and high specificity and activity
Comparative evaluation of in vivo relative bioavailability and in vitro bioaccessibility of arsenic in leafy vegetables and its implication in human exposure assessment
Crosstalk between hypoxia-sensing ULK1/2 and YAP-driven glycolysis fuels pancreatic ductal adenocarcinoma development
<i>In Vivo–In Vitro</i> Correlations for the Assessment of Cadmium Bioavailability in Vegetables
Cistanche deserticola polysaccharide inhibits OVX-induced bone loss in mice and RANKL-induced osteoclastogenesis
COVID-19 Crisis: How Can Plant Biotechnology Help?
Protective Effect of Selenium-Enriched Green Tea on Carbon Tetrachloride-Induced Liver Fibrosis
Effects of silkworm excrement and water management on the accumulation of Cd and As in different varieties of rice and an assessment of their health risk