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Physiological response of spinach to toxic heavy metal stress

机译:菠菜对毒性重金属应力的生理反应

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摘要

yy This study was carried out to investigate the concentration of two heavy metals, i.e., mercury (Hg) and arsenic (As) in soil and plant. Spinach (Spinacia oleracea L.) was used as a test vegetable in a pot experiment. Five spiked concentrations of both the metals along with sewage water were used as treatments. The analyses of the metals were determined in two cuttings. The results showed significant effect of treatments on the concentration of the two metals in soil and plant. The concentrations of As recorded were higher in 1st spinach cutting and reduced in the second harvest. However, comparing the two metal concentrations, it was found that As was absorbed greater as compared with Hg. Analyzing the plant growth parameter, it was found that metal stress has significantly influenced the plant growth. In sewage water pots, As was significantly higher than Hg. The transfer factor from soil to plant showed higher As in plants at lower concentration, but at higher As levels, the transfer rate declined, while Hg showed it was completely inverse. Positive correlation was found between soil applied metal concentration and plant uptake. It may be concluded from the above results that spinach is a good accumulator of heavy metals and has shown significant result of both As and Hg accumulation in plant. The concentration increased with the increasing concentration in soil.
机译:yy本研究进行了研究土壤和植物中两种重金属,即汞(Hg)和砷(AS)的浓度。菠菜(Spinacia Oleracea L.)用作罐实验中的试验蔬菜。金属的五个尖刺浓度以及污水水用作治疗。金属的分析在两个切屑中测定。结果表明治疗对土壤和植物两种金属浓度的显着影响。在第1菠菜切割中,记录的浓度较高,并在第二收获中减少。然而,比较两种金属浓度,发现与Hg相比,如吸收更大。分析植物生长参数,发现金属胁迫显着影响了植物生长。在污水盆中,显着高于Hg。从土壤到植物的转移因子显示在较低浓度下的植物中,但在水平较高时,转移率下降,而Hg显示其完全相同。土壤应用金属浓度与植物摄取之间的阳性相关性。从上述结果可以得出结论,菠菜是重金属的良好蓄积器,并且已经显示出植物中As和Hg积累的显着效果。浓度随着土壤中浓度的增加而增加。

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