首页> 外文期刊>Plant and Soil >EDTA-enhanced lead phytoremediation in sunflower (Helianthus annuus L.) hydroponic culture.
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EDTA-enhanced lead phytoremediation in sunflower (Helianthus annuus L.) hydroponic culture.

机译:EDTA增强了向日葵(水芹)水培培养中的铅植物修复作用。

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The aim of the present study was to investigate the capability of Sunflower (Helianthus annuus L.) to tolerate and accumulate high amount of lead (Pb) and propose it for soil phytoremediation. To this regard, plants were grown in hydroponics and treated with different Pb concentrations (10 to 160 micro M) and a fixed concentration (500 micro M) EDTA (ethylene diamine tetra acetic acid) for 14 and 28 days (d). Effects on total biomass production, photosynthetic pigments and protein contents as well as the quantities of non protein thiols (NP-SH), glutathione (GSH), phytochelatins (PCs) and activity of glutathione reductase (GR) were estimated. Results revealed that roots (575 micro g g-1 DW) and shoots (135 micro g g-1 DW) accumulated Pb after 28 d of exposure, however, addition of EDTA enhanced the Pb accumulation in roots (645 micro g g-1 DW) and shoots (255 micro g g-1 DW). Exposure of Pb (28 d) registered a significant (P<0.05) reduction in growth parameters and induction of phytochelatins (P<0.05; r=0.26) plus some of the important antioxidants (P<0.05; r=0.42), which were positively correlated to metal accumulation. Sunflower exposed at 40 micro M of Pb for 28 d synthesized higher quantity of PC2 (18.5 fold) and PC3 (10.5 fold), as compared to control. However, the results showed that addition of EDTA resulted in low toxicity compared to Pb alone. These data support the capability of H. annuus L. to accumulate and tolerate significant quantity of Pb and its utility for phytoremediation. This is because of the plant has the capacity to combat metal induced oxidative stress via significant synthesis of NP-SH, GSH and high activity of GR, as it would provide sufficient GSH not only for PCs synthesis but also for antioxidant function.
机译:本研究的目的是研究向日葵( Helianthus annuus L.)耐受和积累大量铅(Pb)的能力,并将其用于土壤植物修复。为此,使植物在水培法中生长,并用不同的Pb浓度(10至160 micro M)和固定浓度(500 micro M)的EDTA(乙二胺四乙酸)处理14天和28天(d)。估计了对总生物量产量,光合色素和蛋白质含量以及非蛋白质硫醇(NP-SH),谷胱甘肽(GSH),植物螯合素(PCs)和谷胱甘肽还原酶(GR)活性的影响。结果显示,暴露28 d后,根(575 micro gg -1 DW)和枝条(135 micro gg -1 DW)积累了Pb,但是EDTA的添加增强了根(645 micro gg -1 DW)和枝条(255 micro gg -1 DW)中的铅积累。暴露于Pb(28 d)时生长参数显着降低( P <0.05),诱导植物螯合素( P <0.05; r = 0.26)加上一些重要的抗氧化剂( P <0.05; r = 0.42),它们与金属积累呈正相关。与对照相比,以40 micro M Pb暴露28 d的向日葵合成的PC 2 (18.5倍)和PC 3 (10.5倍)数量更多。但是,结果表明,与单独使用Pb相比,添加EDTA的毒性较低。这些数据支持 H的功能。年金积累和忍受大量的铅及其在植物修复中的效用。这是因为该植物具有通过大量合成NP-SH,GSH和GR的高活性来抵抗金属诱导的氧化胁迫的能力,因为它不仅为PC的合成提供了足够的GSH,而且还为抗氧化功能提供了足够的GSH。

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