Area of research
Neurology · Plant Science
Research interest
Research interests include Chemistry, Phenanthrene, Environmental chemistry, Seedling, Microplastics, and Biochar.
The role of nano-biochar reduces the impact of phenanthrene on wheat photosynthesis
Tris(2,4-di-<i>tert</i>-butylphenyl) Phosphate Is the Key Toxicant in Aged Polyvinyl Chloride Microplastics to Wheat (<i>Triticum aestivum</i> L.) Roots
Risks of microplastics from polyurethane and polyethylene-polycarbonate coated fertilizers to soil-crop system
Accumulation of nanoplastics by wheat seedling roots: Both passive and energy-consuming processes
Indole-3-acetic acid enhances the co-transport of proton and phenanthrene mediated by TaSAUR80-5A in wheat roots
Regulation mechanism of exogenous nitric oxide on phenanthrene uptake by ryegrass roots
Photoaging process and mechanism of four commonly commercial microplastics
Toxicity of photoaged polyvinyl chloride microplastics to wheat seedling roots
In vitro wheat protoplast cytotoxicity of polystyrene nanoplastics
Expeditious profiling of polycyclic aromatic hydrocarbons transport and obstruction mechanisms in crop xylem sap proteins via proteomics and molecular docking
Mechanistic insights into auxin-enhancing polycyclic aromatic hydrocarbon uptake by wheat roots: Evidence from in situ intracellular pH and root-surface H+ flux
Exogenous auxin alters the polycyclic aromatic hydrocarbons apoplastic and symplastic uptake by wheat seedling roots
Microplastic particles alter wheat rhizosphere soil microbial community composition and function
Cellular Process of Polystyrene Nanoparticles Entry into Wheat Roots
New mechanistic insights into PAHs transport across wheat root cell membrane: Evidence for ABC transporter mediation
Mechanistic insights into phenanthrene acropetal translocation via wheat xylem: Separation and identification of transfer proteins
The joint toxicity of polyethylene microplastic and phenanthrene to wheat seedlings
Role of Charge and Size in the Translocation and Distribution of Zinc Oxide Particles in Wheat Cells
Microplastics lag the leaching of phenanthrene in soil and reduce its bioavailability to wheat
Role of miR164 in the growth of wheat new adventitious roots exposed to phenanthrene
Proton-coupled cotransporter involves phenanthrene xylem loading in roots
Mechanism of zinc oxide nanoparticle entry into wheat seedling leaves
Acropetal translocation of phenanthrene in wheat seedlings: Xylem or phloem pathway?
Increased ZnO nanoparticle toxicity to wheat upon co-exposure to phenanthrene
Role of nano-biochar in attenuating the allelopathic effect from <i>Imperata cylindrica</i> on rice seedlings
miR398 is involved in the relief of phenanthrene-induced oxidative toxicity in wheat roots
Phenanthrene-triggered tricarboxylic acid cycle response in wheat leaf
The role of temperature in phenanthrene transfer and accumulation in crop leaves
Carotenoid and superoxide dismutase are the most effective antioxidants participating in ROS scavenging in phenanthrene accumulated wheat leaf
Insights into removal of tetracycline by persulfate activation with peanut shell biochar coupled with amorphous Cu-doped FeOOH composite in aqueous solution