红麻(Hibiscus cannabinus L.)对不同浓度汞(Hg2+)污染的草甘膦的补救作用

L. Lavezzo, D. Delarica, A. Fostier, E. Rigobelo, Roberta Souto Carlos, Camila Chioda de Almeida, Danilo Olandino Souza, W. J. Melo
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引用次数: 1

摘要

研究了大麻木槿(Hibiscus cannabinus,简称红麻)对Hg2 +电位污染的氧溶胶的修复效果。试验采用全随机设计,在受Hg2污染的盆栽环境中进行,4个处理:对照(不含Hg2+)和5、24和36 mg Hg2+ kg-1土壤处理,5个重复/处理。采用原子吸收光谱法测定植物和土壤样品中总汞的含量。在受污染的花盆中生长的红麻没有表现出视觉上的毒性症状。株高在不同处理间无显著差异,但对照干根生物量比Hg处理平均高21.65%,24 mg kg-1处理的干根生物量高于对照和其他处理。总的来说,草甘膦比植物保留了更多的汞。汞在根中的积累比例大于在茎中的积累比例。在处理36 mg kg-1的盆栽中,植株的平均Hg积累量为2.57 mg kg-1 /盆,与其他处理不同,植株的Hg转移因子(TF)也计算为茎部和根部浓度的比值。T1为3.11,T2为1.26,T3为0.05,T4为0.02。治疗组T3与T4无显著差异,TF随Hg剂量增加而降低。结果表明,土壤对汞的吸附作用大于植物对汞的吸附作用。植物对不同土壤汞浓度表现出抗性,可以认为是潜在的Hg2+稳定剂
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Kenaf (Hibiscus cannabinus L.) as a remedy to oxisol contaminated with different mercury (Hg2+) concentrations
We evaluated Hibiscus cannabinus (kenaf) to remedy oxisol contaminated with Hg2 + potential. The study was conducted in a controlled environment in pots with soil contaminated with HgCl2 solution, in a completely randomized design with 4 treatments: control (without Hg2+) and treatments with 5, 24 and 36 mg Hg2+ kg-1 of soil and 5 replicates / treatment. The quantification of total Hg in plant and soil samples was performed by atomic absorption spectrometry. Kenaf grown in contaminated pots did not show visual symptoms of toxicity. Plant height did not differ among treatments, but the dry shoot phytomass was 21.65% higher in control than the average of treatments with Hg. Treatment with 24 mg kg-1 showed dry root phytomass greater than control and the others. In general, oxisol was responsible for retaining greater amount of Hg than plants. Hg accumulated in greater proportion in roots than in shoots. In pots that received 36 mg kg-1, plants accumulated average of 2.57 mg kg-1 of Hg / pot, differing from the other treatments and the Hg transfer factor (TF) in plants was also calculated as the ratio of the concentration in shoots and in roots. The values were as follows: 3.11 for T1, 1.26 for T2, 0.05 for T3 and 0.02 for T4. Treatments showed no difference between T3 and T4 and TF decreased with increasing Hg dose. It could be concluded that Hg was more adsorbed by oxisol than by plants. Plants showed resistance to different soil Hg concentrations and can be considered as potential Hg2+ stabilizer
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