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      Glutathione-induced alleviation of cadmium toxicity in Zea mays.

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          Abstract

          Glutathione (GSH) is known to alleviate cadmium (Cd) stress in many plant species. However, the comprehensive mechanisms responsible for this effect in maize are still need more investigation. Here, a combination of physiological and molecular approaches was utilized in GSH-Cd treated maize seedlings, which revealed that GSH reversed the adverse effects of Cd, as reflected by plant growth, plant hormones, vacuole, stoma development, gene expression, etc. Plant growth, root cell viability, photosynthetic capacity, redox equilibrium, and cell ultrastructure recovery following GSH treatment, coupled with the strong up-regulation of Cd tolerance-related genes (e.g., phytochelatin synthetase-like protein, MYB and WRKY transcription factors, and CYP450), demonstrated the efficient activation of cellular defense against Cd toxicity. The addition of GSH significantly elevated GSH/GSSG ratio and the activity of γ-glutamylcysteine synthetase in both shoots and roots and markedly reduced Cd concentration in shoots. Ethylene emission rate and abscisic acid (ABA) content were significantly reduced after GSH application in the presence of Cd, except ABA content in leaves. These findings highlighted the significance of GSH in alleviating Cd-stress in maize and indicate a promising strategy for safe food production.

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          Author and article information

          Journal
          Plant Physiol. Biochem.
          Plant physiology and biochemistry : PPB
          Elsevier BV
          1873-2690
          0981-9428
          Oct 2017
          : 119
          Affiliations
          [1 ] Analysis Center of Agrobiology and Environmental Sciences, Zijingang Campus, Zhejiang University, Hangzhou 310058, PR China.
          [2 ] Department of Agronomy, College of Agriculture and Biotechnology, Zijingang Campus, Zhejiang University, Hangzhou 310058, PR China.
          [3 ] Department of Agronomy, College of Agriculture and Biotechnology, Zijingang Campus, Zhejiang University, Hangzhou 310058, PR China. Electronic address: caofangbin@zju.edu.cn.
          Article
          S0981-9428(17)30295-4
          10.1016/j.plaphy.2017.09.005
          28917143
          40df8e33-f97a-4cff-96dc-e683b7a329f3
          History

          Maize,Physiological response,Transcript regulation,Cd toxicity,Glutathione

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