重金属对河蟹生理生化特征的影响

V. Bharti, U. Jain, P. Mohil
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引用次数: 0

摘要

以重金属胁迫为研究对象,研究了不同浓度(10、50、100、200、500和1000 ppm) Cu、Cd、Pb、Ni和Zn处理对四叶青草幼苗生长和鲜重等生化指标的影响。在1000ppm浓度下,种子发芽率下降幅度最大。Cd降低40%,Pb降低60%,Ni和Zn降低83%,Cu降低93%,而对照组降低100%。在500ppm浓度的情况下,拍摄长度急剧减少到比镉控制的三分之一。在500 ppm的铅浓度下,它减少到不到控制的一半。结果表明,重金属处理显著降低了四角参幼苗鲜重。与对照相比,施用重金属降低了幼苗鲜白率。随着重金属浓度的增加,除Zn和Cu含量分别达到10 ppm和50 ppm时优于对照外,四角藻总叶绿素含量逐渐降低。结果表明,锌和铜对总类胡萝卜素含量的抑制作用较弱。对照的类胡萝卜素含量为0.37 mg/g鲜重,在1000ppm浓度下降为0.1 mg/g Cd、0.20 mg/g Pb、0.23 mg/g Ni、0.26 mg/g Zn和Cu。所有生化参数在1000ppm时从10ppm增加到1000ppm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Heavy Metals on Physiology and Biochemical Profiling in Cyamopsis tetragonoloba L
In the present investigation effect of abiotic stress in the form of heavy metals was studied for their effect on biochemical parameters including seedling growth and fresh weight of Cyamopsis tetragonoloba L. For this seeds treated with different concentrations (10, 50, 100, 200, 500 and 1000 ppm) of Cu, Cd, Pb, Ni and Zn along with control.  Maximum reduction in seed germination percentage was observed at 1000 ppm concentration. It decreased up to 40% in Cd, 60% in Pb 83% in Ni and Zn and 93% in Cu, whereas it was found to be 100% in the control. The shoot length at 500 ppm concentration was drastically reduced to led than one third of control in case of cadmium. At 500 ppm concentration of lead it was reduced to less than half of control. It was observed that heavy metal significantly reduced the fresh weight of seedling of Cyamopsis tetragonoloba. The percentage decreased in the fresh wright of seedling due to heavy metal application as compared to control. With increases in concentrations of heavy metals there was a gradual decrease in total chorophyll content in Cyamopsis tetragonoloba  except in respect of Zn and Cu up to 10 and 50 ppm concentration, respectively where it was superior to control. It was observed that Zn and Cu were less inhibitory to the amount of total carotenoid content in comparison to other heavy metals. In the control of carotenoid content was 0.37 mg/g fresh weight which decreased to 0.1 mg/g in Cd 0.20 mg/g in Pb, 0.23 mg/g in Ni 0.26 mg/g in Zn and Cu of fresh weight  at 1000 ppm concentration. All biochemical parameters reduced at 1000ppm increasing from 10 ppm.
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