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首页> 外文期刊>Environmental Science and Pollution Research >Glutamic acid assisted phyto-management of silver-contaminated soils through sunflower; physiological and biochemical response
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Glutamic acid assisted phyto-management of silver-contaminated soils through sunflower; physiological and biochemical response

机译:谷氨酸通过向日葵辅助银污染土壤的植物管理; 生理和生化反应

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Phytoremediation is a cost-effective and eco-friendly technique for the removal of heavy metal-contaminated soils and water. The less availability and mobility of heavy metals in medium decreased the efficiency of this technique. The mobility and availability of these metals in the medium can be enhanced by the addition of organic chelators. The present study was conducted to investigate the possibility of glutamic acid (GA) in improving silver (Ag) phytoextraction by sunflower (Helianthus annuus L.). Different concentrations of Ag and GA were supplied in solution form in different combinations after defined intervals. Results depicted that increasing concentration of Ag significantly reduced the plant biomass, photosynthetic pigments, and antioxidant enzyme activities (like catalase, peroxidase, ascorbate, peroxidase, superoxide dismutase). Furthermore, Ag stress increased the Ag concentration and the production of reactive oxygen species (ROS) in sunflower plants. The addition of GA alleviated the Ag-induced toxicity in plants and enhanced Ag concentration and accumulation in sunflower. The addition of GA enhanced Ag accumulation in sunflower roots by 70, 79, 58, and 66% at 0-, 100-, 250-, and 500-mu M Ag treatments, respectively, as compared to control plants. In conclusion, the results showed that Ag significantly reduced the physiological and biochemical attributes in term of reduced growth of sunflower and the addition of GA alleviated the Ag induced toxicity and enhanced Ag uptake. The results suggested that sunflower can be used as hyper-accumulator plant for the removal of Ag under GA. Further studies are required to understand the role of GA at gene and microscopic level in plants.
机译:植物修复是一种成本效益和生态的技术,用于去除重金属污染的土壤和水。介质中重金属的可用性和移动性较低,降低了该技术的效率。通过添加有机螯合剂可以增强培养基中这些金属的迁移率和可用性。进行了本研究以研究谷氨酸(GA)改善Sundlower(Helianthus Annuus L.)改善银(Ag)植物饲料的可能性。在定义的间隔后,在不同组合中以不同组合提供不同浓度的Ag和Ga。结果表明,浓度的Ag浓度显着降低了植物生物质,光合色素和抗氧化酶活性(如过氧化氢酶,过氧化物酶,抗坏血酸,过氧化物酶,超氧化物歧化酶)。此外,Ag应激增加了Ag浓度和向日葵植物中的反应性氧物种(ROS)的产生。 Ga的添加缓解了植物中的Ag诱导的毒性,并增强了向日葵的Ag浓度和积累。与对照植物相比,向向日葵根部的Ga增强的Ag累积分别在0-,100-,250-和500μmAg处理中分别在0-,100-,250-和500μmAg处理中的累积。总之,结果表明,AG在向日葵的增长减少的术语中显着降低了生理和生化学属性,并且添加了GA缓解了AG诱导的毒性和增强的AG吸收。结果表明,向日葵可以用作超蓄电池厂,用于在GA下去除AG。需要进一步的研究来了解Ga在植物中的基因和微观水平的作用。

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