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首页> 外文期刊>The Science of the Total Environment >Influence of organic matter on the uptake of cadmium, zinc, copper and iron by sorghum plants
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Influence of organic matter on the uptake of cadmium, zinc, copper and iron by sorghum plants

机译:有机物对高粱植物吸收镉,锌,铜和铁的影响

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This article describes an experiment, carried out under controlled environment conditions, to investigate the effects of a fulvic acid fraction of soil organic matter on growth, cadmium (Cd) uptake and redistribution by sorghum. In addition the uptake of copper (Cu), zinc (Zn) and iron (Fe) was also determined. Sorghum was grown in nutrient solutions with 0, 0.1, 1 and 10 mg Cd dm~(-3), in the absence and presence of organic matter (32 mg C dm~(-3)), for various periods up to 20 days. A decrease in sorghum biomass due to Cd toxicity was observed at 10 mg Cd dm~(-3), but for concentrations of 0.1 and 1 mg Cd dm~(-3) the biomass was increased compared with control, without visual toxicity symptoms. The presence of organic matter (OM) further increased biomass production. Cadmium was mainly retained in sorghum roots, as usually found in tolerant plants, but Cd accumulation in sorghum was greater than in other Gramineae, or even more tolerant plants such as lettuce. The presence of OM decreased the bioavailability of Cd that was partially retained in solution by the OM ligands. However, OM promoted the translocation of Cd to shoots, an effect that may pose a risk to public health because plant-animal transfer of Cd could be enhanced. The presence of OM decreased the uptake of Cu, Zn and Fe. The presence (vs. absence) of 0.1 mg Cd dm~(-3) enhanced the uptake of Fe, both in the absence and presence of OM.
机译:本文介绍了在受控环境条件下进行的一项实验,以研究土壤有机质中富富酸酸部分对高粱生长,镉(Cd)吸收和再分配的影响。此外,还测定了铜(Cu),锌(Zn)和铁(Fe)的吸收。高粱在有,无有机物(32 mg C dm〜(-3))存在下于0、0.1、1和10 mg Cd dm〜(-3)的营养液中生长长达20天。在10 mg Cd dm〜(-3)时,由于Cd毒性导致高粱生物量减少,但是在0.1和1 mg Cd dm〜(-3)的浓度下,与对照相比,生物量增加,没有视觉毒性症状。有机物(OM)的存在进一步增加了生物质的产生。镉主要保留在高粱根中,就像通常在耐性植物中发现的那样,但是高粱中Cd的蓄积量比其他禾本科甚至更多的耐性植物(如生菜)要大。 OM的存在降低了OM配体部分保留在溶液中的Cd的生物利用度。但是,OM促进了Cd向芽的转运,这种作用可能会危害公共健康,因为可以增强Cd在植物和动物之间的转移。 OM的存在降低了Cu,Zn和Fe的吸收。无论是否存在OM,0.1 mg Cd dm〜(-3)的存在(相对于缺乏)均提高了Fe的吸收。

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