Related Experiment Video
Updated: Jun 7, 2026

Atomic Absorbance Spectroscopy to Measure Intracellular Zinc Pools in Mammalian Cells
Published on: May 16, 2019
Zinc and ascorbic acid synergistically alleviate cadmium toxicity in wheat by modulating transporter genes and
Qiyu Zhang1, Cheng Jiang1, Chang Wei1
1College of Resources and Environment, Henan Agricultural University, Zhengzhou 450046, PR China; Key Laboratory of Cultivated Land Quality Conservation in the Huanghuaihai Plain, Ministry of Agriculture and Rural Affairs, Zhengzhou 450046, PR China; State Key Laboratory of High-Efficiency Production of Wheat-Maize Double Cropping, Henan Agricultural University, Zhengzhou 450046, PR China.
Abstract:
Cadmium (Cd) contamination in agricultural soils poses a significant threat to global food safety and environmental quality. This study investigated the synergistic effects and mechanisms of exogenous zinc (Zn) and ascorbic acid (AsA) in reducing Cd toxicity in wheat (Triticum aestivum L. cv. Xinong 979). Wheat seedlings were exposed to 10 μmol·L-1 Cd and treated with 25 μmol·L-1 Zn, 200 μmol·L-1 AsA, or their combination. The combined application of Zn and AsA was more effective in mitigating Cd-induced growth inhibition than either treatment alone. Moreover, the combined treatment modulated the expression of key Cd transporter genes (TaIRT2, TaLCT1, TaHMA3, and TaNRAMP5), thereby influencing the uptake and distribution of Zn and Cd in plants. Statistical modeling, including partial least squares path modeling (PLS-PM) and random forest, identified root Cd parameters and leaf antioxidant activities as critical predictors of plant performance. Our findings demonstrate that the co-application of Zn and AsA alleviates Cd toxicity via a dual mechanism, namely "root shielding" (reducing Cd uptake) and "shoot detoxification" (enhancing antioxidant capacity), providing a promising strategy for reducing Cd accumulation in wheat.
Related Concept Videos
Vitamins
Sulfur Assimilation

