Area of research
Plant Science · Pollution
Research interest
Research focused on Gene and Cadmium, with related work in Oryza sativa, Transcriptome, Brassica. Notable publications include 'Identification of novel rice (Oryza sativa) HPP and HIPP genes tolerant to heavy metal toxicity', 'Identification of a new function of metallothionein-like gene OsMT1e for cadmium detoxification and potential phytoremediation', and 'Transcriptome analysis revealed pivotal transporters involved in the reduction of cadmium accumulation in pak choi (Brassica chinensis L.) by exogenous hydrogen-rich water'.
Slope orientation regulates the joint influence of ephemeral plants and microorganisms on the soil multifunctionality of the mobile sand dunes
Spatiotemporal patterns and physiological drivers of seasonal water use in Picea schrenkiana: insights from hydrogen and oxygen stable isotopes
Editorial: Plant-soil-microbial interactions in arid areas
Variations of soil bacterial community structure and function under different habitats of Tamarix ramosissima Ledeb. in the upper reaches of the Tarim River, Northwest China
Abscisic acid and reactive oxygen species were involved in slightly acidic electrolyzed water-promoted seed germination in watermelon
Hydrogen-rich water ameliorates the toxicity induced by Ca(NO3)2 excess through enhancing antioxidant capacities and re-establishing nitrate homeostasis in Brassica campestris spp. chinensis L. seedlings
Identification of a new function of metallothionein-like gene OsMT1e for cadmium detoxification and potential phytoremediation
IRT1 and ZIP2 were involved in exogenous hydrogen-rich water-reduced cadmium accumulation in Brassica chinensis and Arabidopsis thaliana
Nutrient Removal Process and Cathodic Microbial Community Composition in Integrated Vertical-Flow Constructed Wetland – Microbial Fuel Cells Filled With Different Substrates
Transcriptomic and physiological comparsion of the short-term responses of two Oryza sativa L. varieties to cadmium
Identification of novel rice (Oryza sativa) HPP and HIPP genes tolerant to heavy metal toxicity
The zinc-regulated protein (ZIP) family genes and glutathione s-transferase (GST) family genes play roles in Cd resistance and accumulation of pak choi (Brassica campestris ssp. chinensis)
Increased antioxidative capacity and decreased cadmium uptake contribute to hemin-induced alleviation of cadmium toxicity in Chinese cabbage seedlings
Lower cadmium accumulation and higher antioxidative capacity in edible parts of Brassica campestris L. seedlings applied with glutathione under cadmium toxicity
Transcriptome analysis revealed pivotal transporters involved in the reduction of cadmium accumulation in pak choi (Brassica chinensis L.) by exogenous hydrogen-rich water