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Microwave irradiation and citric acid assisted seed germination and phytoextraction of nickel (Ni) by Brassica napus L.: morpho-physiological and biochemical alterations under Ni stress

机译:通过Brassica Napus L的微波辐射和柠檬酸辅助种子萌发和植物萃取镍(Ni):Ni应激下的均匀生理和生化改变

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The complex bio-geochemistry of soil allows pollutant to persist for a longer period of time which further decreased the fertility and natural composition of land. Nickel, an inorganic pollutant, coming from a wide range of industrial and manufacturing units possesses serious threat to soil degradation and crop productivity around the world. The present study was carried to evaluate the combined role of microwave irradiation (MR) and citric acid (CA) on the phytoextraction potential of Brassica napus L. under Ni stress. An initial seed germination test was conducted to select effective time scale of MR exposure. Highest seed germination was observed at exposure of 2.45 GHz frequency for 30 s. Healthy seeds of B. napus L. genotype Faisal Canola (RBN-03060) treated with MR at 2.45 GHz for 30 s were sown in plastic pots filled with 5 kg of soil. Nickel and CA applied exogenously in solution form with different combinations to both MR-treated and untreated B. napus plants. The MR-treated plants showed higher growth, biomass, photosynthetic pigments (Chl a, b, total, and carotenoids) and activities of antioxidant enzymes (SOD, POD, APX, CAT) as compared to untreated plants who showed higher reactive oxygen species (MDA, H2O2) and electrolyte leakage. Increasing Ni concentration significantly decreased the physiological and biochemical attributes of B. napus both in MR-treated and untreated plants. The addition of CA alleviated Ni-induced toxic effects in both MR-treated and untreated plants by improving antioxidant defense system. The degree of Ni stress mitigation was higher in MR-treated plants. The Ni concentration was higher in root, stem, and leaves of MR-treated plants under CA application as compared to untreated plants. The present study concluded that seeds treated with MR before sowing showed higher accumulation and concentration of Ni from soil, and this phenomenon boosted with the application of CA.
机译:土壤的复杂生物地球化学允许污染物持续更长的时间,这进一步降低了土地的生育和自然组成。来自各种工业和制造业单位的无机污染物镍具有对世界各地的土壤退化和作物生产力的严重威胁。进行本研究以评估微波辐射(MR)和柠檬酸(CA)对芸苔植物植物植物植物植物植物植物的组合作用。进行初始种子萌发试验以选择MR暴露的有效时间等级。在2.45GHz频率的暴露下观察到最高种子萌发30秒。 B. Napus L.基因型Faisal Canola(RBN-03060)的健康种子在2.45GHz MR持续30秒的塑料盆中播种,占有5公斤土壤。镍和CA外源施用的溶液形式与不同的组合到两个MR处理的和未处理的欧洲油菜植物。与未处理的植物相比,MR治疗植物显示出更高的生长,生物质,光合颜料(CHL A,B,总和类胡萝卜素)和抗氧化酶(SOD,POD,APX,猫)的活性,所述植物显示出更高的活性氧( MDA,H2O2)和电解质泄漏。增加Ni浓度显着降低了MR治疗和未经处理的植物中的B. Napus的生理生化属性。通过改善抗氧化防御系统,添加Ca缓解Ni诱导的MR治疗和未处理的植物毒性作用。 MR处理的植物中Ni应激减缓程度较高。与未处理的植物相比,Ca施用下的MR处理植物的根部,茎和叶中的Ni浓度较高。本研究得出结论,播种前用MR治疗的种子表现出较高的土壤积累和浓度,并且这种现象促进了加利福的应用。

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